Ahmed Sobhy Darwish | Analytical Chemistry | Best Researcher Award

Dr. Ahmed Sobhy Darwish | Analytical Chemistry | Best Researcher Award

PhD student at Zagazig University, Egypt

Ahmed Sobhy Abdelrahim Abdallah Darwish is an accomplished analytical chemist and Laboratories Development Deputy Manager at Egyptian International Pharmaceutical Industries (EIPICO), also affiliated with Zagazig University. He holds a B.Sc. in Chemistry‑Physics, a diploma (Analytical Chemistry, excellent), pre-master, and a Master’s degree, all from Zagazig University. Currently pursuing a Ph.D. He began his career in QC laboratories at Delta Pharma, then progressed through section head roles at Grand Pharma, Averroes, Al‑Debeiky, and Copad Pharma. He leads a team of ten at EIPICO, overseeing method development, stress stability studies, and comparative in vitro investigations. He actively contributes to regulatory harmonization by engaging with USP, BP, SFDA, and other pharmacopoeias. A Best Researcher Award recipient, he has submitted case studies to BP and participated in USP pilot programs. He also serves as a peer reviewer for international journals.

Professional Profile

Google Scholar | ORCID

Education

Ahmed Sobhy Darwish’s academic background showcases a steady commitment to excellence in analytical chemistry. He began his studies with a Bachelor’s degree in Chemistry‑Physics from Zagazig University, graduating with high distinction. He further pursued a diploma in Analytical Chemistry with top honors, followed by a pre‑master qualification marked by outstanding academic achievement. His educational journey culminated in a Master’s degree in Analytical Chemistry, and he is currently engaged in doctoral studies in the same field. His English proficiency is evidenced by a TOEFL score that surpasses common requirements for doctoral programs. This well-structured academic progression illustrates his deepening expertise, strong theoretical foundation, and dedication to advanced analytical techniques.

Professional Experience

Ahmed Sobhy Darwish has built an extensive career in pharmaceutical quality control and analytical method development. He began with a foundational role as a quality control chemist, where he developed essential technical skills. He progressed through leadership roles in various pharmaceutical companies, overseeing stability studies and analytical methodology. His responsibilities included managing laboratory operations, validating stability-indicating methods, and leading teams in analytical research. Currently, he holds a senior position where he directs lab development initiatives, supervises a professional team, and leads innovative projects such as stress stability testing and in vitro comparative studies. He also liaises with pharmacopoeial bodies, reflecting his authority in aligning practices with regulatory standards. His career demonstrates a trajectory of growing leadership, technical depth, and strategic contribution to pharmaceutical innovation.

Research Focus

Dr. Darwish’s research centers on developing eco-friendly, stability-indicating HPLC and liquid chromatography methods for pharmaceutical analysis. His work prioritizes environmental sustainability while ensuring robustness and regulatory compliance. Key areas include quantifying drugs such as piracetam, vincamine, levomenol, netilmicin, colchicine, khellin, valsartan, sacubitril, simvastatin, and fenofibrate in bulk and finished dosage forms. He emphasizes certified reference materials, green solvent systems, and minimal waste generation. By submitting two eco-analytical case studies to the British Pharmacopoeia sustainability guidance, he directly impacts regulatory practice. Participation in the USP Quality Assist Beta Pilot Program and BP Beta Site studies further reinforces his focus on method validation in real-world settings. His research bridges analytical precision with environmental responsibility, positioning him at the forefront of sustainable pharmaceutical quality control.

Publication Top Notes

“A Simple Eco‑Friendly Stability‑Indicating HPLC Method for Determination of NETILMICIN in Bulk and Ophthalmic Solution”, Biomedical Chromatography (August 2025), DOI: 10.1002/bmc.70152.
A validated HPLC approach using green solvents to quantify netilmicin in bulk and ophthalmic solutions, offering reduced environmental impact while maintaining assay accuracy.

“Environmental sustainability profiles assessment of HPLC stability indicating method for quantitation of piracetam and vincamine in pharmaceutical medications”, Talanta Open (August 2025), DOI: 10.1016/j.talo.2025.100407.
Evaluates environmental metrics (e.g., solvent consumption, waste) for HPLC methods analyzing piracetam and vincamine, demonstrating greener alternatives without sacrificing sensitivity.

“Developing a sensitive, ecological, and economic HPLC method for the concurrent quantification of KOLCHICINE and KHELLIN”, Microchemical Journal (July 30, 2025), DOI: 10.1016/j.microc.2025.114716.
Introduces a dual-analyte HPLC method for colchicine and khellin in bulk and sachets, optimized for sensitivity and cost-effectiveness using eco-friendly solvents.

“Simple validated approach to quantify valsartan and sacubitril in medications using liquid chromatography”, Bulletin of Faculty of Science, Zagazig University (July 1, 2025).
Presents a streamlined LC protocol for simultaneous determination of valsartan and sacubitril, validated for pharmaceutical formulations with robust linearity and accuracy.

“DEVELOPMENT AND VALIDATION OF STABILITY INDICATING RP‑HPLC METHOD FOR SIMULTANEOUS DETERMINATION OF SIMVASTATIN AND FENOFIBRATE IN BULK AND DOSAGE FORM”, Bulletin of Faculty of Science, Zagazig University (July 1, 2025).
Reports a reversed‑phase HPLC technique validated for concurrent analysis of simvastatin and fenofibrate, incorporating stress degradation studies to ensure specificity.

“An ecologically sound HPLC determination of LEVOMENOL in topical therapies using a certified reference material with green properties”, Results in Chemistry (May 8, 2025).
Describes a certified‑reference based HPLC method for levomenol quantification in topical products, optimizing green solvent usage while achieving regulatory-grade precision.

Conclusion

Dr. Darwish’s deep integration of sustainability, innovation, and leadership in pharmaceutical analytics makes him an exceptional nominee for the Best Researcher Award. His profile aligns well with the award’s objectives of recognizing impactful, regulatory-aligned, and environmentally responsible scientific contributions.

Hem Bahadur Motra | Rock Mechanics | Applied Engineering Award

Dr. Hem Bahadur Motra | Rock Mechanics | Applied Engineering Award

Lecturer, Christian Albrecht University of Kiel, Germany

Dr. Hem Bahadur Motra is a distinguished geomechanics expert and academic leader with a German nationality and South Asian roots. He currently serves as the Head of the Geomechanics Experimental Laboratory at Christian-Albrechts-Universität zu Kiel and holds lecturing positions at both Kiel University and the University of Applied Sciences Kiel. His interdisciplinary expertise spans rock mechanics, structural engineering, and geotechnical testing. Renowned for his international collaborations and practical research applications, Dr. Motra has been affiliated with premier institutions across Europe, Asia, and North America. His scientific work integrates multiscale experimental modeling, anisotropic behavior of rocks, and geotechnical system responses under complex stress conditions. Beyond academia, he consults for engineering firms in Germany, Nepal, and the U.S., translating complex research into applied solutions. Dr. Motra is a forward-thinking researcher committed to developing sustainable subsurface engineering practices through innovation, data integration, and high-fidelity experimental validation.

Professional Profile

Scopus

Education

Dr. Hem Bahadur Motra has pursued a progressive academic trajectory in civil engineering, specializing in geomechanics and structural engineering. He earned his Doctorate in Engineering (Dr.-Ing.) from Bauhaus-Universität Weimar with the highest distinction, focusing on quality assessment of structural experimental models. His Master’s degree in Civil Engineering with a focus on Geotechnics and Infrastructure was awarded by Gottfried Wilhelm Leibniz Universität Hannover, with excellent academic performance. He completed his Bachelor’s degree in Civil Engineering at Tribhuvan University, Nepal, graduating with distinction. Dr. Motra is currently finalizing his Habilitation at Christian-Albrechts-Universität zu Kiel, focusing on the multiscale and multipurpose integration of rock physics and geomechanics. His education is enriched by fellowships and scholarships from prestigious organizations, including DAAD and national academic institutions. His academic foundation blends strong analytical theory with a practical, problem-solving approach, making him a leader in both scientific inquiry and real-world application.

Experience

Dr. Motra brings extensive professional and academic experience across universities, research institutes, and engineering consultancies. He leads the Geomechanics Experimental Laboratory at Christian-Albrechts-Universität zu Kiel, where he also teaches courses in marine and terrestrial geotechnics. He lectures at the University of Applied Sciences Kiel in civil engineering, and formerly contributed to the Bauhaus-Universität Weimar as a research assistant. Internationally, he has completed multiple research stays across Europe, North America, and Asia, working with leading experts in rock physics, shale hydrocarbon exploration, and underground construction. Additionally, he co-founded Geocom International Pvt. Ltd. in Nepal, focusing on geotechnical investigation, tunneling, and subsoil surveys. His consulting experience includes collaborations with Babendererde Engineers (Germany), Engineering and Testing Service Inc. (USA), and Kastamandap Associate Pvt Ltd (Nepal). His work integrates research, teaching, consulting, and experimentation—making him an applied engineering professional with global influence and technical depth.

Research Focus

Dr. Hem Bahadur Motra’s research bridges the gap between theoretical rock mechanics and applied geotechnical engineering. His central focus is on the multiscale behavior of anisotropic rocks under true-triaxial and thermal stress environments. He investigates micromechanical properties of kerogen-rich formations, deformation in high-rank coals, and the behavior of shale under varying lithological and stress conditions. His approach emphasizes experimental validation using advanced triaxial apparatus, with applications in deep tunneling, underground energy storage, and hydrocarbon recovery. Dr. Motra also explores quality control techniques for structural experimental models and integrates numerical modeling to simulate real-world geotechnical behavior. His work has strong implications in sustainable infrastructure design, underground construction, and the geotechnical challenges of climate-resilient development. By combining laboratory precision, field knowledge, and modeling expertise, Dr. Motra contributes to safer and more efficient engineering solutions in both marine and terrestrial environments.

Publication Top Notes

Title: Elastic properties of anisotropic rocks using a stepwise loading framework in a true triaxial testing apparatus
Journal: Geoenergy Science and Engineering
Authors: Hem Bahadur Motra et al.
Summary: This study investigates the elastic response of anisotropic rocks under multiaxial loading. A custom true-triaxial apparatus was used to capture stiffness variations and directional dependency in rock specimens. Results help improve geomechanical models for underground construction and energy extraction.

Title: Influence of lithological contrast on elastic anisotropy of shales under true-triaxial stress and thermal conditions
Journal: International Journal of Rock Mechanics and Mining Sciences
Authors: Hem Bahadur Motra et al.
Summary: This paper examines how lithological heterogeneity affects shale behavior under combined stress and temperature conditions. Findings aid in optimizing hydraulic fracturing and subsurface fluid flow simulations.

Title: Elastic anisotropy and deformation characteristics of Pennsylvania anthracite
Journal: International Journal of Coal Geology
Authors: Hem Bahadur Motra et al.
Summary: Focuses on deformation and elastic responses of high-rank coals. The study provides insight into coal seam stability and gas extraction efficiency, with implications for mine safety.

Title: Micromechanical variation of organic matter (kerogen type I) under controlled thermal maturity progression
Journal: Journal of Rock Mechanics and Geotechnical Engineering
Authors: Hem Bahadur Motra et al.
Summary: Analyzes the microstructural and mechanical evolution of kerogen under simulated thermal aging. Results assist in understanding source rock maturation and improving petroleum system models.

Conclusion

Dr. Motra exemplifies the spirit of applied engineering through his blend of academic excellence, international collaboration, and field-relevant innovation. His contributions directly address challenges in geotechnical and subsurface engineering, making his candidacy highly suitable and compelling for the Research for Applied Engineering Award.

Ahmadreza Arbab | Cellular Therapy | Best Researcher Award

Dr. Ahmadreza Arbab | Cellular Therapy | Best Researcher Award

Clinical Biologist at Institute Gustave Roussy, France

Antoine Ahmadreza Arbab is a highly respected medical biologist specializing in hematology-immunology at a premier cancer center in France. Born in Tehran and educated in Iran and France, he holds a medical doctorate and pursued advanced training in hematology flow cytometry. With over two decades of clinical and research experience, Dr. Arbab has built a strong record in diagnostic hematology, CAR‑T cell monitoring, and digital PCR-based leukemia diagnostics. He works at the intersection of clinical service and research, supervising laboratory technicians and interns and participating in multidisciplinary tumor boards. His dynamic career trajectory has earned him recognition for rigor in laboratory accreditation and leadership in technology-driven hematologic diagnostics.

Professional Profile

Scopus | ORCID

Education

Dr. Arbab earned his Doctor of Medicine degree after rigorous medical studies in Tehran, culminating in an outstanding distinction for his doctoral research on peritoneal dialysis. Following relocation to France, he passed the competitive national medical residency exam and completed his specialization in medical biology at Grenoble University, with rotations in hematology, hemostasis, biochemistry, and microbiology. He defended his thesis on digital PCR‑based quantification of NPM1 mutations in acute myeloid leukemia. He subsequently pursued a diploma in hematology flow cytometry to deepen expertise in immunophenotyping and MRD monitoring. His education combines foundational clinical medicine with advanced molecular diagnostics and laboratory accreditation training—equipping him to bridge laboratory science and patient‑oriented hematology diagnostics.

Experience

At a leading cancer center, Dr. Arbab has served as a medical biologist in hematology‑immunology. He oversees interpretation of complete blood counts, bone marrow aspirates, lymph node imprints, and immunophenotyping analyses—including CAR T‑cell monitoring—and plays an integral role in validating and accrediting laboratory protocols. His responsibilities extend to supervising technicians and interns, and contributing to hematology tumor board meetings. Earlier, he completed a residency in medical biology with a hematology specialization, undertaking rotations across multiple diagnostic domains and an oncology‑genetics internship. Prior to his specialization, he practiced as a physician‑researcher in anesthesiology research in Iran, including membership in WHO‑affiliated initiatives. He also served as a field physician during military service, providing public health and STD prevention education. His career demonstrates a progression from clinical practice to advanced diagnostic leadership.

Research Focus

Dr. Arbab’s research centers on precision hematologic diagnostics using advanced molecular and immunophenotypic techniques. He focuses on monitoring minimal residual disease in acute myeloid leukemia via digital PCR quantification of NPM1 mutations, and on CAR‑T cell therapy’s impact and monitoring. He contributes to studies on circulating tumor DNA and TP53/dna damage gene mutations in cancer patients, leveraging liquid biopsy for personalized oncology. Additional interests include post‑CAR‑T cell therapy complications such as therapy‑related myelodysplastic syndromes and plasma cell dedifferentiation in refractory multiple myeloma. His approach integrates next‑generation sequencing, flow cytometry, and molecular quantification to refine diagnostics, guide clinical decisions, and anticipate therapeutic responses. Through collaborations in molecular‑tumor boards and multidisciplinary teams, his work bridges laboratory innovation with clinical translation.

Publication Top Notes

Genomic landscape of liquid biopsy mutations in TP53 and DNA damage genes in cancer patients – npj Precision Oncology. DOI: 10.1038/s41698‑024‑00544‑7. Co‑authors include Damien Vasseur, Fabiola Giudici, Christophe Marzac, Stefan Michiels, Marco Tagliamento, et al.
Summary: Comprehensive analysis of circulating tumor DNA in TP53 and DNA damage–related genes across cancer types, informing precision oncology and non‑invasive monitoring.

Myelodysplastic syndrome following chimeric antigen receptor T‑cell therapy treated with allogenic stem cell transplantation – Immunotherapy. DOI: 10.2217/imt‑2022‑0205. Co‑authors Khalil Saleh, David Ghez, Camille Bigenwald, Sophie Cotteret, Christophe Marzac, Véronique Saada, Véronique Vergé, et al.
Summary: Case series and review of MDS occurrence after CAR‑T therapy, discussing salvage via allogeneic transplant and implications for long‑term CAR‑T follow‑up.

Next‑Generation Sequencing on Circulating Tumor DNA in Advanced Solid Cancer: Swiss Army Knife for the Molecular Tumor Board? A Review of the Literature Focused on FDA Approved Test – Cells. DOI: 10.3390/cells11121901. Co‑authors Damien Vasseur, Hela Sassi, Arnaud Bayle, Marco Tagliamento, Benjamin Besse, Christophe Marzac, Nathalie Auger, Sophie Cotteret, Mihaela Aldea, et al.
Summary: Literature review of ctDNA NGS tests approved by FDA, highlighting their value in molecular tumor board settings for guiding treatment decisions in advanced solid tumors.

Plasma cell dedifferentiation in refractory multiple myeloma – British Journal of Haematology. DOI: 10.1111/bjh.17244. Co‑authors Véronique Saada, Sophie Cotteret, Christophe Marzac, David Ghez.
Summary: Investigation of morphological and phenotypic changes in plasma cells in refractory myeloma cases, with implications for diagnosis and resistance mechanisms.

Conclusion:

While his collaborative work is commendable, further enhancement as lead or senior author and deeper involvement in international research networks could broaden his academic footprint. Nonetheless, Dr. Arbab’s integration of molecular diagnostics with clinical hematology, especially in the emerging field of cellular therapy, positions him as a standout figure deserving of recognition through the Best Researcher Award.

 

 

 

 

Jasmine Dang | Human Factors – Mindwandering | Best Researcher Award

Dr. Jasmine Dang | Human Factors – Mindwandering | Best Researcher Award

DoD, Devom C5ISR RTI, United States

Dr. Jasmine Sierra Dang is a human‑factors expert with over a decade of applied research experience spanning defense, cognitive science, and ergonomics. She earned her Ph.D. in Human Factors and Applied Cognition from George Mason University in 2020, with advanced degrees in psychology and neuroscience. Currently serving both as Executive Officer to the RTI Director and as an engineering psychologist at the C5ISR Modeling and Simulation Division, she bridges technical leadership and strategic liaison roles. Her published portfolio spans peer‑reviewed journals and prominent conference proceedings in domains such as sustained attention, vigilance decrement, and human‑automation trust. Dr. Dang has held top‑secret/SCI clearance and served on selection boards for DARPA’s Intrinsic Cognitive Security program. Highly multilingual and cross‑disciplinary, she mentors students, leads teams, and applies rigorous scientific methods to real‑world defense and autonomy systems. Her contributions have earned recognition across military, NATO, and government research communities.

Professinal Profile

 Google scholar

Education

Dr. Dang holds a Ph.D. in Human Factors and Applied Cognition from George Mason University (2020), with earlier degrees from the same institution: an M.S. earned in 2019 and a B.S. in Psychology (with Neuroscience minor and Human Factors concentration) in 2017. Her doctoral and master’s research focused on vigilance decrement, sustained attention, and mind‑wandering—core concepts in understanding operator performance in prolonged tasks. During her undergraduate studies, she received the Undergraduate Research Scholars Award twice, demonstrating early excellence in scholarly inquiry. Her education combined rigorous theoretical underpinnings with applied experimental methods on tasks such as the Sustained Attention to Response Task (SART). She’s also experienced in statistical techniques (e.g., SPSS, R) and in designing cognitive experiments, giving her both quantitative and qualitative methodological fluency.

Professional Experience

Dr. Dang currently holds dual roles at Fort Belvoir, Virginia: as Executive Officer and Technical Aide to the RTI Director since January 2025, and as Engineering Psychologist for the C5ISR Modeling & Simulation Division (RTI MSD) since September 2022. In the former, she manages mission‑critical deliverables, coordinates strategic engagements, crafts executive communications, and supports senior leadership decisions. In the latter, she serves as a government technical lead, occasionally acting Branch Chief, and evaluates high‑value DARPA proposals. Previously, she was Senior Engineering Psychologist at Planned Systems International (2020–2022), leading research projects, conducting user evaluations, and liaising between contractors and military stakeholders. Earlier internships include work at the Naval Research Laboratory (2019) analyzing vigilance and eye‑tracking data and at AFRL’s Airmen Interacting with Robotics lab (2018), building Unreal Engine simulations. She also taught research methods and statistics at George Mason University (2018–2020) and conducted multiple R‑based and simulated driving studies.

Research Focus

Dr. Dang specializes in vigilance decrement, sustained attention, and mind‑wandering, particularly as they affect operators managing autonomous systems and cognitive workloads. Her work employs tasks like the Sustained Attention to Response Task (SART) to investigate attentional lapses, decision speed vs. inattention, and warning cue efficacy. She also explores human‑automation trust, cognitive security, and how interface transparency influences trust calibration in simulated scenarios. Her studies often use behavioral, eye‑tracking, survey, and focus‑group methodologies to deliver insights into real‑world performance. Recent projects include soldier-in-the-loop evaluations (e.g. AR waypoint navigation, bifocal prototypes, snow‑terrain detection), and multi‑domain virtual prototypes. She has co‑authored journal articles in Human Factors, Experimental Brain Research, and Psychological Research, focusing on cognitive feedback, performance emphasis, and attentional dynamics under real-time feedback.

Publication Top Notes

Dang, J. S., Figueroa, I. J., & Helton, W. S. (2018). You are measuring the decision to be fast, not inattention: The Sustained Attention to Response Task does not measure sustained attention. Experimental Brain Research, 236(6).

Demonstrated that SART primarily captures response style (speed) rather than lapses in sustained attention, challenging widely held assumptions.

Dang, J. S., Shaw, T. H., McKnight, P. E., & Helton, W. S. (2022). A closer look at warning cues on the sustained attention to response task performance. Human Factors.

Explored how auditory warning cues impact SART performance; found cues can improve detection but may introduce trade‑offs in response style.

Mensen, J. M., Dang, J. S., Stets, A. J., & Helton, W. S. (2021). The effects of real‑time performance feedback and performance emphasis on SART. Psychological Research.

Showed that live feedback and emphasizing performance goals enhance sustained attention and task accuracy.

Graybeal, J., Dang, J., et al. (2021–22). ATLAS and NVD‑Next User Evaluations & MDUSA Virtual Prototype.

Multi-year soldier user evaluations of augmented reality/navigation prototypes, assessing usability, situational awareness, and detection performance across conditions.

Conclusion

Dr. Jasmine S. Dang presents as an exceptionally well-qualified, multidisciplinary researcher with a rare combination of deep cognitive science expertise, applied human factors knowledge, and strategic leadership within the U.S. defense research ecosystem. Her record of publications, awards, and leadership roles—especially within high-security, mission-critical contexts—makes her an ideal candidate for a Best Researcher Award.

Yuanke Wu | Main Bearing of Shield Machine | Best Researcher Award

Dr. Yuanke Wu | Main Bearing of Shield Machine | Best Researcher Award 

Senior Engineer, China Railway Engineering Corporation, China

Dr. Yuanke Wu is a postdoctoral fellow at China Railway Engineering Equipment Group Co., Ltd., with a doctorate from Southwest Jiaotong University. He specializes in the study of tunnel boring machine (TBM) main bearings and surface science. Dr. Wu has led pioneering research through a self-developed full-scale TBM main bearing test bench, combining operational and life-cycle simulations with novel evaluation methodologies. His entropy weight–grey correlation degree method has set a benchmark in bearing performance diagnostics. With several patents and six peer-reviewed journal articles, he bridges theoretical insight and industrial application. As a Young Editorial Board Member of the Journal of Dynamics, Monitoring and Diagnostics, Dr. Wu plays an active role in academic discourse. His work significantly contributes to improving the reliability and lifespan evaluation of critical mechanical systems used in large-scale infrastructure projects.

Professional Profile

Scopus

Education 

Dr. Yuanke Wu earned his Ph.D. from Southwest Jiaotong University, a renowned Chinese institution known for excellence in railway and transportation engineering. His academic background emphasizes mechanical engineering, tribology, and systems dynamics, with a strong research focus on TBM components and bearing systems. Throughout his doctoral journey, Dr. Wu developed expertise in experimental mechanics, condition monitoring, and the digital twin modeling of large-scale machinery. His work on surface science and contact mechanics laid the foundation for his subsequent innovations in TBM main bearing diagnostics. Dr. Wu’s rigorous academic training has enabled him to seamlessly integrate advanced theoretical modeling with practical industrial applications, an approach that defines his current postdoctoral research at China Railway Engineering Equipment Group.

Experience 

Dr. Wu currently serves as a postdoctoral researcher at China Railway Engineering Equipment Group Co., Ltd., where he focuses on the digital diagnostics and lifespan evaluation of TBM main bearings. He has successfully built and operated a full-scale main bearing test bench capable of replicating real-world load spectrums for operational and life-cycle assessments. His practical work extends to software development for digital condition monitoring systems and the application of advanced algorithms for wear prediction and fault diagnostics. In addition to his experimental contributions, Dr. Wu has co-authored multiple high-impact papers, participated in national-level research projects like the Henan Province Science and Technology Research Project (Grant No. 242102221010), and applied for seven Chinese patents. He brings together engineering design, system testing, and data analytics in a highly specialized field, making him an asset to both academic and industrial environments.

Research Focus 

Dr. Wu’s research primarily revolves around main bearings of tunnel boring machines (TBMs)—crucial components for large-scale infrastructure machinery. His work involves tribological analysis, surface science, and the development of diagnostic tools for bearing wear and fault detection. A key innovation is his entropy weight–grey correlation degree method, which provides a quantitative approach to assess bearing performance under realistic load conditions. He has constructed a digital life analysis platform integrated with a full-scale test bench, enabling dynamic simulations of operational conditions. His interests also extend to the tribological behavior of high-speed railway brakes, indicating a broader focus on mechanical interface reliability. By combining experimental techniques with data-driven modeling, Dr. Wu’s research contributes significantly to the predictive maintenance and lifecycle management of mission-critical components in transportation and tunneling systems.

Publication Top Notes

A method for evaluating the performance of main bearings of TBM based on entropy weight–grey correlation degree
Sensors, 2021, 25(15), 4715. [DOI: https://doi.org/10.3390/s25154715]
Summary: Proposes a novel evaluation framework using entropy weighting and grey relational analysis to assess the performance of TBM main bearings. Demonstrates applicability through experimental validation using a full-scale test bench.

Load characterization of the main bearing of a large tunnel boring machine based on dynamic characteristic parameters
Tribology International, (Volume and issue pending confirmation)
Summary: Investigates the dynamic loading behavior of TBM main bearings under actual working conditions, emphasizing transient effects and fatigue life estimation.

Tribological and dynamical analysis of a brake pad with multiple blocks for a high-speed train
Wear, (Volume and issue pending confirmation)
Summary: Analyzes multi-block brake pad configurations and their influence on friction, vibration, and wear in high-speed rail systems.

The influence of friction blocks connection configuration on high-speed railway brake systems performance
Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit
Summary: Explores how different configurations of brake friction blocks affect braking efficiency, noise, and system stability.

The effect of damping components on the interfacial dynamics and tribological behavior of high-speed train brakes
Tribology Letters, (Volume and issue pending confirmation)
Summary: Studies the role of damping layers and their influence on friction-induced vibrations and wear patterns in braking systems.

Brake squeal of a high-speed train for different friction block configurations
Journal of Sound and Vibration, (Volume and issue pending confirmation)
Summary: Provides an experimental and theoretical study on the mechanisms of brake squeal in high-speed trains, with a focus on block configuration.

Conclusion

Dr. Yuanke Wu demonstrates a strong profile characterized by technical innovation, research productivity, and practical impact in the field of TBM main bearing diagnostics and surface science. His work bridges experimental mechanics, digital diagnostics, and industrial application, making him a highly suitable candidate for the Best Researcher Award. Continued expansion of international collaborations and professional visibility will further enhance his already impressive contributions.

 

 

Catherine Barker | Dermatology | Best Researcher Award

Dr. Catherine Barker | Dermatology | Best Researcher Award

 Dr. Dermatology Resident.,  Medical University of South Carolina, United states

Catherine Shirer Barker, MD, is a distinguished dermatology resident at the Medical University of South Carolina. Born and raised in South Carolina, she earned her Bachelor of Science in Biological Sciences with a Spanish minor, graduating Summa Cum Laude from the University of South Carolina Honors College. She pursued a Doctor of Medicine degree at MUSC College of Medicine, completing medical school, followed by a preliminary internal medicine year. Her professional journey reflects a consistent commitment to patient care, medical education, and research excellence. Fluent in Spanish, she has worked extensively with underserved populations and volunteered as a medical interpreter, bridging linguistic and cultural gaps in healthcare delivery. Catherine’s multidisciplinary background, linguistic skills, and proactive leadership make her a dynamic early-career physician dedicated to advancing dermatologic care, global health, and health equity.

Professional Profile

ORCID

Education 

Dr. Barker earned her Bachelor of Science in Biological Sciences with a Spanish minor from the University of South Carolina Honors College, graduating Summa Cum Laude. Her undergraduate thesis explored physician perceptions of medication nonadherence among diabetic immigrant patients. She went on to pursue her Doctor of Medicine degree at the MUSC College of Medicine. Following medical school, she completed a preliminary internal medicine residency at MUSC, which provided a strong foundation in internal medicine. She is currently in her dermatology residency at MUSC. Throughout her training, she has maintained certification in Advanced Cardiac Life Support (ACLS) and completed comprehensive CITI training, including Good Clinical Practice for behavioral research, biomedical investigations, human subjects protection, and ICH guidelines for investigational trials. This educational path demonstrates her dedication to clinical medicine, research ethics, and specialized dermatologic care.

 Research Experience 

Dr. Barker’s research portfolio is both broad and impactful. As a medical student at MUSC, she contributed to major dermatopathology research, including a retrospective analysis of 879 direct immunofluorescence (DIF) specimens in bullous diseases, where she demonstrated that n-serrated waves should not exclude bullous lupus and that u-serrated patterns had limited sensitivity for diagnosis. At local free clinics in Charleston, she led a project identifying dermatologic care gaps among uninsured patients, managed IRB applications, surveyed seven clinics, and created a prescribing guide to reduce misdiagnoses. She also co-authored a retrospective study on nurse navigation’s impact on timelines to care in breast pathology, reinforcing the value of improved care coordination. Her undergraduate research addressed diabetic polypharmacy outcomes in hospital stays and explored IL‑33/ST2 pathways in tumorogenesis in murine models. Across these roles, she has been involved in data collection, protocol development, literature review, manuscript writing, IRB applications, and cross-disciplinary collaboration.

Research Focus 

Dr. Barker’s primary research interests lie at the intersection of dermatopathology, inflammatory/connective tissue dermatologic disease, and health equity. She is especially focused on serration patterns (u- versus n-serrated) in direct immunofluorescence specimens to refine diagnostic criteria for bullous diseases (e.g., bullous pemphigoid, epidermolysis bullosa acquisita, and bullous lupus). She also investigates practical solutions to improve dermatologic access in underserved populations by implementing teledermatology programs, optimizing prescribing practices in free clinics, and assessing care delivery gaps between primary care providers and specialists. Her work extends to exploring immunomodulatory treatments—such as using dupilumab for actinic prurigo—and dermatologic implications of connective tissue and mycobacterial diseases. Moreover, her interest in global health and equitable access is evident in her outreach to uninsured and immigrant patient groups. Dr. Barker seeks to integrate clinical insights with novel diagnostic and therapeutic pathways to advance skin disease care in both academic and community settings.

Publication Top Notes

  1. Hudson K, Barker C, Oates J, Williams K. Rheumatologic manifestations in an X-linked chronic granulomatous disease carrier. American Journal of Medical Science. Accepted July 2025.
    Summary: Case series exploring autoimmune and rheumatologic features in female carriers of CGD—a novel clinical lens on CGD heterozygosity.

  2. Sagut P, Lyles E, Vroman J, Barker C, Juratli H, Bruner E, Self S, Elston D. A Comparative Study of Direct Immunofluorescence Patterns in Linear IgA Bullous Dermatosis versus Dermatitis Herpetiformis. American Journal of Dermatopathology. Published November 2024.
    Summary: Direct immunofluorescence patterns compared between two blistering disorders to improve differentiation and diagnostic accuracy.

  3. Barker C, Elston D, Lee K. Generalized Fixed Drug Eruption: A Case Series and Literature Review. Cutis, July 2024.
    Summary: Case series of generalized fixed drug eruptions, synthesizing treatment outcomes and literature-based management comparisons.

  4. Barker C, Elston D. Asymptomatic Erythematous Plaque in an Outdoorsman. Cutis, April 2024.
    Summary: Clinical vignette of an outdoor-activity-related dermatologic presentation, highlighting diagnostic considerations.

  5. Barker C, McGovern TW, Elston DM. Botanical Briefs: Phototoxic Fig Trees. Cutis, April 2024.
    Summary: Educational brief describing plant‑induced phototoxic dermatoses related to fig tree exposures.

  6. Barker C, Sattele L, Strat N, Snyder A, Siegel M, Wine Lee L. Dupilumab as Treatment for Actinic Prurigo. JAAD Case Reports, March 2024.
    Summary: Case series documenting success of dupilumab in treating refractory actinic prurigo, offering mechanistic and therapeutic insights.

  7. Barker C, Bruner E, Self S, Elston D. U‑Serrated and N‑Serrated Patterns in Bullous Pemphigoid, Epidermolysis Bullosa Acquisita, and Bullous Lupus: A Retrospective Observational Study. Journal of the American Academy of Dermatology, Feb 2024.
    Summary: Large DIF study examining serrated immunofluorescence patterns to refine diagnostic thresholds for bullous dermatoses—finding n-serration not exclusionary for lupus and low sensitivity of u-serration for bullous lupus.

  8. Barker C, Alshaikh H, Elston D. Dermatology Practice Updates in Mycobacterial Disease. International Journal of Dermatology, Dec 2023.
    Summary: Review article summarizing emerging diagnostic and treatment modalities in dermatologic manifestations of mycobacterial infection.

  9. Chung C, Barker C, Mukherjee R, et al. The Impact of Nurse Navigation on Timeliness to Treatment for Benign Breast Pathology. Breast Cancer Research and Treatment, Aug 2023.
    Summary: Study linking nurse navigation programs with shorter referral-to-treatment intervals in high-risk benign breast lesions.

  10. Lateef A, Barker C, Snyder A, et al. Adverse events seen with fillers. Dermatology Reviews, July 2023.
    Summary: Review of complications associated with cosmetic fillers, with recommendations for prevention and management.

Conclusion

Dr. Catherine Shirer Barker stands out as an exceptionally strong candidate for a Best Researcher Award, particularly in early-career or resident categories. Her work bridges clinical dermatology, social determinants of health, and translational science with notable clarity, productivity, and compassion. With continued trajectory toward independent funding and broader-scale research leadership, she is poised to become a national leader in dermatologic research.

 

Mruganxi Harshad Sharma | Food Science and Technology | Best Researcher Award

Ms. Mruganxi Harshad Sharma | Food Science and Technology | Best Researcher Award

PhD Student, Prince of Songkla university, Thailand

Mruganxi Harshad Sharma is a dynamic and emerging researcher in the field of Food Science and Microbiology, currently pursuing his Ph.D. at Prince of Songkla University, Thailand. With a solid academic foundation in microbiology from Veer Narmad South Gujarat University and over two years of hands-on research and lab experience, Mruganxi is passionate about advancing food safety through molecular, microbiological, and innovative non-thermal techniques. His work has contributed to addressing critical challenges such as antimicrobial resistance and pathogen control in seafood and meat products. He has published in reputed journals like Foods and International Journal of Food Science and Technology, showcasing his ability to apply novel scientific tools like cold plasma and bioactive compound conjugates in food preservation. His collaborative projects and award-winning presentations underline his commitment to impactful, solution-oriented research that bridges microbiology, technology, and public health.

Professional Profile

Scopus | Google Scholar | ORCID

Education

Mruganxi Harshad Sharma’s educational journey reflects a strong foundation in life sciences and a focus on applied microbiology. He is currently pursuing a Ph.D. in Food Science and Technology at Prince of Songkla University, Thailand. Prior to this, he completed his M.Sc. in Microbiology from Veer Narmad South Gujarat University in Surat, India, graduating with a CGPA of 6.73 in 2021. He earned his B.Sc. in Microbiology with a CGPA of 6.27 from Shree Ramkrishna Institute of Computer Education and Applied Sciences in Surat in 2019. His earlier academic background includes secondary education from Jay Ambe Vidhyabhavan under the Gujarat State Board (70.5%) and his schooling at Divine Child High School under CBSE (8.4 CGPA). This academic progression underscores his consistent focus on biological sciences, enabling him to develop both technical and research-oriented skills essential for tackling food safety, microbial control, and bioprocessing challenges.

Professional Experience

Mruganxi has developed robust laboratory and research skills through diverse professional roles. From October 2021 to October 2022, he worked as a Microbiologist at the Pacific School of Engineering, affiliated with the Environmental Audit Cell of the Gujarat Pollution Control Board. In this role, he performed microbiological analysis related to water and air quality, ensuring regulatory compliance. Prior to that, he served as a Lab Technician at the RT-PCR Laboratory at Veer Narmad South Gujarat University from April 2021 to October 2021. There, he conducted PCR analyses for viral detection, nucleic acid extraction, and reagent preparation. These positions have equipped him with practical experience in molecular biology, environmental monitoring, and analytical instrumentation. His transition into academia and research was a natural evolution, driven by his interest in food safety, microbiological innovations, and public health. His professional experiences enrich his Ph.D. research by grounding it in real-world applications and industry needs.

Awards and Honors

Mruganxi Harshad Sharma has earned recognition for both academic excellence and extracurricular engagement. Most notably, he received the Best Graduate Student Oral Presentation Award at the prestigious International Symposium on Natural Product Innovation and Commercialization (NPIC) in Satun, Thailand, in November 2024. His ability to communicate complex research findings effectively has also been acknowledged through his active participation in various scientific forums and student activities. He took part in a World Water Day quiz organized by the Uttarakhand Pollution Control Board in March 2022 and participated in multiple quiz and drama competitions organized by the Undergraduate Association of Microbiologists (UGAM) in 2018 and 2019. In March 2018, he won third prize for presenting a biology model at an inter-college science competition. These achievements reflect his well-rounded personality, strong communication skills, and his enthusiasm for science outreach—essential traits for a modern researcher and academic leader.

Research Focus

Mruganxi Sharma’s research lies at the intersection of food microbiology, food safety, and advanced preservation technologies. He is particularly focused on developing novel, sustainable antimicrobial strategies to combat foodborne pathogens such as Vibrio parahaemolyticus and multidrug-resistant bacteria in seafood. His investigations explore the use of chitooligosaccharide-epigallocatechin gallate conjugates, non-thermal high-voltage atmospheric cold plasma, and Maillard reaction products derived from protein hydrolysates as safe alternatives for food preservation. His work is highly relevant to the seafood industry, food packaging, and global health, aiming to reduce antibiotic reliance while improving food shelf life and sensory attributes. Through interdisciplinary collaboration, Mruganxi applies molecular tools, biochemical assays, and sensory evaluation methods to validate the efficacy of these emerging interventions. His vision is to bridge microbiological science and real-world applications, ensuring food security and public health safety. His research supports the Sustainable Development Goals (SDGs), particularly those related to food and health.

Publication Top Notes

Title: Physical, textural, microbiological, and sensorial properties and oxidative stability of chicken patty fortified with Maillard reaction products derived from salmon frame (Salmo salar) protein hydrolysate


Journal: International Journal of Food Science and Technology (2025)
DOI: 10.1093/ijfood/vvae020
Contributors: Sharma, K.; Sharma, M.H.; Buatong, J.; Fu, Y.; Benjakul, S.
Summary: This study evaluates the integration of Maillard reaction products derived from salmon protein into chicken patties to enhance their oxidative stability, microbiological quality, and sensory characteristics. Results showed improved shelf life and consumer acceptance, providing an effective bio-based solution in processed meat products.

Title: Impact of Chitooligosaccharide Conjugated Epigallocatechin Gallate and Non-Thermal High-Voltage Atmospheric Cold Plasma on Vibrio parahaemolyticus: An In Vitro Study and the Use in Blood Clam Meat


Journal: Foods (2025-07-23)
DOI: 10.3390/foods14152577
Contributors: Sharma, M.H.; Singh, A.; Singh, Ankita; Benjakul, S.; Palamae, S.; Mittal, A.; Buatong, J.
Summary: This paper investigates the synergistic antimicrobial effect of a chitooligosaccharide–epigallocatechin gallate (COS–EGCG) conjugate and cold plasma on Vibrio parahaemolyticus in clam meat. The study demonstrates significant pathogen reduction without compromising sensory quality, highlighting a promising method for seafood safety.

Title: Multidrug-Resistance of Vibrio Species in Bivalve Mollusks from Southern Thailand: Isolation, Identification, Pathogenicity, and Their Sensitivity toward Chitooligosaccharide-Epigallocatechin-3-Gallate Conjugate


Journal: Foods (2024)
DOI: 10.3390/foods13152375
Contributors: Sharma, M.H.; Palamae, S.; Yingkajorn, M.; Benjakul, S.; Singh, A.; Buatong, J.
Summary: This study characterizes multidrug-resistant Vibrio species isolated from bivalve mollusks and evaluates the antimicrobial effects of COS–EGCG. Findings provide valuable insights into controlling seafood-borne pathogens using bio-based alternatives and support future applications in the seafood industry.

Conclusion

Mruganxi Harshad Sharma is a promising young researcher whose work bridges scientific innovation and practical applications in food safety and microbiology. His interdisciplinary focus, publication record, and dedication to improving food quality through modern scientific approaches make him a compelling candidate for the Best Researcher Award.

 

Dr. Seltene Abady | Agricultural Science and Innovation | Best Researcher Award

Dr. Seltene Abady | Agricultural Science and Innovation | Best Researcher Award

Postdoctoral Research Fellow, University of KwaZulu-Natal, South Africa

Dr. Seltene Abady Tesfamariam is a dedicated plant breeder committed to enhancing agricultural resilience in Eastern and Southern Africa. He earned a PhD in Plant Breeding from the University of KwaZulu‑Natal (2018–2021), supported by an OFID scholarship under CGIAR. Currently a Postdoctoral Fellow at the African Centre for Crop Improvement (since 2023), he previously led the National Groundnut Research Program in Ethiopia and served as Assistant Professor at Haramaya University. With over two decades of experience in research and teaching, Dr. Tesfamariam specializes in breeding drought‑tolerant groundnut, sorghum, maize, and wheat, integrating genetics, field trials, and advanced statistical tools. He has secured multiple grants and training awards, making him a recognized leader in agricultural innovation, capacity building, and sustainable food systems in Africa.

Professional Profile

ORCID

Education

Dr. Tesfamariam’s academic path combines solid foundational training with rigorous postgraduate specialization. He completed a BSc in Plant Sciences (2003–2006) and an MSc in Plant Breeding (2011–2013) at Haramaya University, Ethiopia, focusing on crop genetics and breeding under local agronomic conditions. He went on to earn a PhD in Plant Breeding from the University of KwaZulu‑Natal, South Africa (2018–2021), supported by an OFID/CGIAR scholarship. His doctoral work employed genome-wide association studies and advanced statistical analysis to dissect drought tolerance traits in groundnut. During this period, he also participated in numerous high‑level trainings—such as ASReml‑R modeling, meta‑analysis of research, and demand‑led variety design—shaping both theory and practice in modern plant breeding.

Professional Experience

Dr. Tesfamariam has more than 17 years of progressive agricultural research and academic experience. From 2007 to 2013, he worked as an Assistant Researcher at the Ethiopian Agricultural Research Institute, including leading SIMLESA projects at Pawe Research Center. He then transitioned to Haramaya University, serving as Lecturer (2013–2016) and Assistant Professor (2017–2023), where he taught plant breeding, supervised students, conducted field trials, and led local crop improvement initiatives. He coordinated Ethiopia’s National Groundnut Research Program (2015–2017), driving variety development and stakeholder engagement. Since 2023, he has been a Postdoctoral Fellow at the African Centre for Crop Improvement at the University of KwaZulu‑Natal, focusing on enhancing stress resilience in African staple crops. His experience spans applied genomics, extension outreach, and leadership of multi‑institutional research teams.

Awards and Honors

Dr. Tesfamariam has earned recognition through competitive grants and training awards tied to innovation and crop improvement. He received the OFID scholarship under CGIAR to support his doctoral studies. In 2019, he was awarded funding from the International Foundation for Sciences (IFS), Stockholm. In 2021, he secured a Haramaya University research grant on transpiration efficiency in groundnut. In 2023, he received an Africa UniNet award on gender‑inclusive peanut production and aflatoxin mitigation. He has participated in prestigious international training programs—including ACIAR’s ASReml‑R workshop (2024), ICRISAT’s drought‑tolerance breeding initiative (2018–2020), and meta‑analysis and demand‑led variety design courses at KwaZulu‑Natal and Makerere. Professional memberships include the Southern Africa Plant Breeders’ Association and the Crop Science Society of Ethiopia.

Research Focus

Dr. Tesfamariam’s research is centered on breeding climate‑resilient cultivars to improve food security in drought‑prone regions of Africa. He specializes in groundnut, sorghum, maize, and wheat, targeting traits such as drought tolerance, early maturity, water‑use efficiency, harvest index, and carbon storage. His approach integrates genome-wide association studies (GWAS), SNP markers, advanced statistical modeling (e.g. ASReml‑R), and field experimentation across diverse agro‑ecologies. He examines physiological traits—transpiration efficiency, proline accumulation, nitrogen use—and their genetic basis. His work also addresses aflatoxin contamination and gender‑inclusive peanut production strategies. Collaboration with institutions like ICRISAT, Cranfield University, and regional universities has enabled multidisciplinary innovation. His goal is development and deployment of improved varieties that support nutrition, farm resilience, and sustainable intensification under climate stress.

Publication Top Notes

  • Breeding for resistance to maize streak virus: Challenges, progress and future directions

Frontiers in Plant Science, 2025. Contributors: Mushayi, Malven; Shimelis, Hussein; Derera, John; Tesfamariam, Seltene Abady.
Summary: A comprehensive review of breeding efforts against maize streak virus, synthesizing progress in genetic resistance and outlining future breeding strategies tailored to African maize systems.

  • Genetic diversity and population structure analyses of tropical maize inbred lines using SNP markers

PLOS ONE, 2025. Contributors: Rodreck GununduID; Hussein Shimelis; Seltene Abady Tesfamariam.
Summary: This study uses SNP genotyping to dissect population structure in tropical maize, highlighting key diversity patterns to inform parent selection in breeding programs.

  • Progress in Sorghum Improvement for Early Maturity, Harvest Index, and Water‑Use Efficiency

Food and Energy Security, 2025. Contributors: Byamungu Lincoln Zabuloni; Hussein Shimelis; Seltene Abady Tesfamariam; Maryke Labuschagne; Elize Botha.
Summary: Evaluates sorghum genotypes for proxy traits associated with drought tolerance; identifies early‑maturing lines with superior harvest index and water‑use efficiency.

  • Genetic Parameters and Trait Associations in Wheat Under Drought and Low Nitrogen Conditions

Nitrogen, 2024. Contributors: Sbongeleni Warren Duma; Hussein Shimelis; Seltene Abady Tesfamariam; Toi Tsilo.
Summary: Examines wheat under water and nitrogen stress, quantifying trait correlations—vital for selection of dual‑stress tolerant lines under resource‑limited settings.

  • Genetic variation and association of yield, yield components, and carbon storage in sorghum genotypes

BMC Genomic Data, 2024. Contributors: Asande Ngidi; Hussein Shimelis; Seltene Abady; Vincent Chaplot; Sandiswa Figlan.
Summary: Links yield and biomass traits in sorghum with carbon storage potential, informing breeding for both productivity and soil carbon offset benefits.

  • Genome‑wide association analysis for drought tolerance and component traits in groundnut gene pool

Euphytica, 2024. Contributors: Abady, Seltene; Shimelis, Hussein; Janila, Pasupuleti; Wankhade, Ankush; Chimote, Vivek P.
Summary: Identifies marker-trait associations for key drought adaptive traits in groundnut germplasm; supports marker-assisted selection for stress resilience.

  • Response of Sorghum bicolor genotypes for yield and carbon storage in shoot and root systems

Scientific Reports, 2024. Contributors: Asande Ngidi; Hussein Shimelis; Seltene Abady; Sandiswa Figlan; Vincent Chaplot.
Summary: Field trial assessment of sorghum varieties for biomass partitioning and organic carbon storage under varying management regimes.

Conclusion

Dr. Seltene Abady Tesfamariam exemplifies the qualities of a Best Researcher Award recipient. His research directly addresses pressing challenges in African agriculture—climate change adaptation, food security, and sustainable crop production. With an exceptional blend of scientific rigor, leadership, training, and international engagement, he has significantly advanced the field of plant breeding and made lasting contributions to the agricultural development of the region. He is, without doubt, a highly deserving candidate for this prestigious recognition.

Hüseyin Sendir | Earth Sciences | Best Researcher Award

Assist. Prof. Dr. Hüseyin Sendir | Earth Sciences | Best Researcher Award

Asst. Prof. Dr., Eskişehir Osmangazi University, Turkey

Dr. Hüseyin Sendir is an Assistant Professor of Geological Engineering at Eskişehir Osmangazi University, Turkey, with a Ph.D. (2009) in Geological Engineering from the same institution. His early career research focused on rock mechanics, landslide risk, and structural geology, as reflected in high‑impact papers such as his widely cited 2002 study on gypsum strength correlations. Over two decades his scholarship expanded into mineral deposit geology, isotopic geochemistry, and even planetary mining studies. He serves in multiple academic and quality commissions at his university, and currently holds leadership roles including Deputy Head of Department.

Professional Profile

Scopus | Google Scholar | ORCID

Education

Dr. Sendir completed his Bachelor of Engineering in Geological Engineering at Sivas Cumhuriyet University (1995–1999), followed by two Master’s degrees: at Cumhuriyet University (1999–2001) and at Eskişehir Osmangazi University (2001–2004), both thesis‑based in Geological Engineering. He earned his Ph.D. from Eskişehir Osmangazi University’s Institute of Science (2004–2009), specializing in geological engineering. His doctoral research investigated rock mechanics, geomechanical behavior, and field‑based measurements, which underpinned his later contributions to landslide analysis and compressive strength modeling. His formal academic training blends engineering fundamentals, field geology, and advanced isotopic and mineralogical methods.

Experience

Since completing his doctorate in 2009, Dr. Sendir has served as faculty in the Department of Geological Engineering at Eskişehir Osmangazi University. He was Head of Department from 2015 to 2016, again 2017–2022, and since 2023 has been Deputy Head. He is regularly a member of academic, quality‑assurance and accreditation commissions affiliated with the university and faculty—including roles in curriculum development and stakeholder engagement. In 2025 he also joined the Department Academic Incentive Evaluation Commission. His administrative service reflects sustained leadership in shaping educational quality and academic policy within the engineering faculty. Simultaneously, he taught postgraduate and doctoral courses in topics such as isotope geology and rare earth elements, supervising master’s theses and contributing to the academic development of the department.

Research Focus

Dr. Sendir’s research spans applied geological engineering, mineral deposit geology, isotope geochemistry, and emerging frontiers like planetary mining. His early landmark work established empirical correlations between Schmidt hammer rebound indices and rock mechanical properties (UCS, Young’s modulus) in gypsum—widely cited and used as a benchmark in rock mechanics. He has contributed to the geomorphological and geomechanical analysis of landslides in the North Anatolian Fault Zone. More recent work explores chromium and manganese deposits in Türkiye, Eocene granitoid magmatism and tectono‑magmatic evolution in NW Anatolia, and geochemical and isotopic controls on gold, copper‑molybdenum‑tungsten‑gold systems in porphyry‑skarn complexes. His research is deeply interdisciplinary, blending fieldwork, petrography, isotopic dating, and geochemistry, with growing interest in extraplanetary resource environments like lunar and Martian mining. He positions geological engineering at the intersection of energy, resources, and environmental resilience.

Publication Top Notes

  1. Yılmaz I, Sendir H. Correlation of Schmidt hardness with unconfined compressive strength and Young’s modulus in gypsum from Sivas (Turkey). Engineering Geology 66 (3–4): 211–219 (2002).

    • This empirical study developed regression relationships between Schmidt rebound values and mechanical properties of gypsum, providing fast, field‑based strength estimation tools for engineering geology; the work has been cited hundreds of times ResearchGate.

  2. Sendir H, Yılmaz I. Structural, geomorphological and geomechanical aspects of the Koyulhisar landslides in the North Anatolian Fault Zone (Sivas, Turkey). Environmental Geology 42(1): 52–60 (2002).

    • Investigated the 1998–2000 landslides through joint structural mapping, slope stability criteria (SMR/RMR), rainfall data and geomorphology; demonstrated the influence of faulting, steep topography and heavy precipitation on landslide activation ResearchGate.

  3. Sendir H. Arifler (Domaniç, Kütahya) yöresi manganöz cevherleşmesinin jeolojik özellikleri. Eskişehir Osmangazi Üniversitesi Mühendislik ve Mimarlık Fakültesi Dergisi (2020).

    • Documented geological setting, stratigraphy, and mineralization of manganese deposits hosted in Cretaceous mélange units near Domaniç, offering regional insights into ultramafic‑hosted ore systems avesis.ogu.edu.tr+2ResearchGate+2DergiPark+2.

  4. Sendir H, Yasin D, Karabacak V. Jeoloji Mühendisliği Güncel Çalışma Alanları. Eskişehir Osmangazi Üniversitesi Mühendislik ve Mimarlık Fakültesi Dergisi, 31(4): 1087–1093 (Dec 2023).

    • A comprehensive review of historical and contemporary research directions in geological engineering in Türkiye, covering educational developments, research themes and future horizons avesis.ogu.edu.tr+2DergiPark+2ResearchGate+2.

  5. Kocatürk H, Kumral M, Creaser RA, Dufrane SA, Ünlüer AT, Sendir H, et al. Magmatic Redox Evolution and Porphyry–Skarn Transition in Multiphase Cu‑Mo‑W‑Au Systems of the Eocene Tavşanlı Belt, NW Türkiye. Minerals 15(8):792 (2025).

    • Employing field mapping, whole‑rock geochemistry, Re–Os molybdenite dating and mineral chemistry, this open‑access article explains magmatic controls on porphyry to skarn mineralization across four mineralized zones in the Nilüfer complex mdpi.com+1ResearchGate+1.

  6. Umucu Y, Ünal N, Deniz V, Gürsoy YH, Sendir H. Investigation of ball mill optimization based on kinetic model and separator particle‑size separation. Physicochemical Problems of Mineral Processing (2025).

    • Presented a kinetic breakage model linking mill capacity, shaft power, and particle size distribution; suggests operational relationships to improve energy efficiency in dry ball‑mill grinding circuits

Conclusion

Overall, Asst. Prof. Hüseyin Sendir’s longstanding commitment to academic service, teaching excellence, and research — particularly his early, highly cited geotechnical studies and recent ventures into cutting-edge areas like extraterrestrial mining — illustrate a dynamic and evolving academic trajectory. Given his contributions to both scientific knowledge and institutional development, he is a strong candidate for the Best Researcher Award, and recognition at this stage would both honor his past work and encourage further high-impact contributions in the years ahead.

Hanlin Zhan | Advanced Electric Machine and Drives | Best Researcher Award

Prof. Hanlin Zhan | Advanced Electric Machine and Drives | Best Researcher Award

Tenured Full Professor, Harbin Institute of Technology (Shenzhen), China

Prof. Hanlin Zhan, born on April 26, 1990, is a Full Professor at Harbin Institute of Technology (Shenzhen), specializing in electrical engineering with a focus on advanced electric drive technologies. He earned his Ph.D. from the University of Sheffield, supported by Siemens-Gamesa, and completed postdoctoral research through the Tsinghua University–Midea Group collaboration. Prof. Zhan has a rich academic and industrial background, having led cutting-edge research at Midea’s Institute of Robotics and Automations. His work is widely published in IEEE Transactions, contributing significantly to sensorless control, PMSM drives, and high-efficiency electric motors. With over 30 million RMB in research funding, he continues to bridge academia and industry. Recognized with awards such as the “Outstanding Young Professor” and Huawei’s “Spark Prize,” he remains a driving force in the electrification of robotics, EVs, eVTOLs, and smart appliances.

Professional Profile

Scopus | Google Scholar | ORCID

Education

Prof. Hanlin Zhan’s educational journey reflects a balance of foundational knowledge and advanced specialization. He earned his Bachelor’s and Master’s degrees in Electrical Engineering from Harbin Institute of Technology (HIT), where he studied under Prof. Gaolin Wang from the esteemed group of Prof. Dianguo Xu. He later pursued a Ph.D. at the University of Sheffield (2014–2017), with his research funded by Siemens-Gamesa and supervised by Prof. Z.Q. Zhu—renowned for his contributions to electric machines. His thesis work was embedded in real-world applications, aligning with industrial innovations. Following this, Prof. Zhan completed a competitive postdoctoral fellowship (2017–2019) through the Midea Group–Tsinghua University Joint Program, mentored by Prof. Xi Xiao. This multidisciplinary exposure enabled him to integrate academic rigor with industrial demands, forming a solid basis for his future research in electric drives and intelligent systems.

Experience

Prof. Hanlin Zhan’s professional experience bridges high-level academia and transformative industry research. He began his career at Midea Group’s Corporate Research Center, serving from 2017 to 2020. There, he quickly advanced from Staff Engineer in the Institute of Motor and Drives to Senior Staff Engineer and Founder of the Institute of Robotics and Automations. In 2020, he transitioned to academia as a Tenured Associate Professor at Harbin Institute of Technology (Shenzhen), where his research and teaching significantly impacted the Department of Robotics and Advanced Manufacture. In December 2024, he was promoted to Full Professor. His career is marked by leadership in high-value projects (over 30 million RMB) and the establishment of collaborative platforms between academic institutions and industrial innovators. His cross-functional experience positions him as a thought leader in intelligent electromechanical systems, making substantial contributions to China’s high-performance robotics and electrified transport sectors.

Awards and Honors

Prof. Hanlin Zhan has received numerous prestigious honors for his contributions to electric drive systems and robotics. He was awarded the First Prize in the Science and Technology Award by the China National Light Industry Council, acknowledging his groundbreaking work in smart appliances. The Harbin Institute of Technology recognized him as an “Outstanding Young Professor,” an honor bestowed for excellence in research, teaching, and innovation. Notably, he received the “Spark Prize” from HUAWEI Technologies, highlighting his influence on intelligent hardware design. He was also globally selected for the elite “Midea Star” Global Recruitment Project in 2017—an initiative identifying under-10 international top talents in electrical and automation research. These accolades reflect Prof. Zhan’s continuous impact on industrial transformation, advanced electric machines, and sensorless control methods, reinforcing his role as a leading expert shaping the future of high-efficiency, intelligent electromechanical systems across diverse applications.

Research Focus 

Prof. Hanlin Zhan’s research focuses on high-performance electric drive technologies tailored for robotics, electric vehicles (EVs), electric vertical take-off and landing aircraft (eVTOLs), and smart home appliances. His work emphasizes sensorless control, high-efficiency motor design, and advanced position estimation methods. He has made pioneering contributions to the modeling and suppression of harmonic errors in IPMSM drives, development of novel vernier and hybrid excited machines, and the integration of zero-sequence current suppression techniques in open-winding PMSM systems. Through strong collaborations with industrial giants like Midea and Siemens-Gamesa, Prof. Zhan ensures that his research directly impacts the market-ready products and sustainable mobility solutions. His lab also explores adaptive feedback control, modular machines, and drive efficiency optimization. This comprehensive approach positions him at the frontier of electrification and automation technologies, where performance, precision, and reliability are paramount.

Publication Top Notes

  1. Adaptive compensation method of position estimation harmonic error for EMF-based observer in sensorless IPMSM drives
    G. Wang, H. Zhan, G. Zhang, X. Gui, D. Xu
    IEEE Trans. Power Electronics, 29(6), pp. 3055–3064, 2014. [Cited by: 256]
    This paper presents a method to compensate harmonic errors in EMF-based position estimators, significantly improving sensorless control accuracy in IPMSM drives.
  2. Analytical on-load subdomain field model of permanent-magnet vernier machines
    Y. Oner, Z.Q. Zhu, L.J. Wu, X. Ge, H. Zhan, J.T. Chen
    IEEE Trans. Industrial Electronics, 63(7), pp. 4105–4117, 2016. [Cited by: 159]
    Introduces an analytical model for PM vernier machines under load, enhancing prediction accuracy of electromagnetic performance.
  3. Enhanced position observer using second-order generalized integrator for sensorless IPMSM drives
    G. Wang, L. Ding, Z. Li, J. Xu, G. Zhang, H. Zhan, R. Ni, D. Xu
    IEEE Trans. Energy Conversion, 29(2), pp. 486–495, 2014. [Cited by: 150]
    Proposes a robust observer utilizing SOGI to improve sensorless control under varying operating conditions.
  4. Self-commissioning of PMSM drives at standstill considering inverter nonlinearities
    G. Wang, L. Qu, H. Zhan, J. Xu, L. Ding, G. Zhang, D. Xu
    IEEE Trans. Power Electronics, 29(12), pp. 6615–6627, 2014. [Cited by: 149]
    Addresses accurate PMSM parameter identification without motion, factoring inverter nonlinearities.
  5. Novel consequent-pole hybrid excited machine with separated excitation stator
    H. Hua, Z.Q. Zhu, H. Zhan
    IEEE Trans. Industrial Electronics, 63(8), pp. 4718–4728, 2016. [Cited by: 141]
    Demonstrates improved flux control in hybrid excitation machines using a novel stator configuration.
  6. Analysis and suppression of zero-sequence circulating current in open winding PMSM drives
    H. Zhan, Z. Zhu, M. Odavic
    IEEE Trans. Industry Applications, 53(4), pp. 3609–3620, 2017. [Cited by: 133]
    Provides insights and control strategies to reduce circulating current in open-winding configurations.
  7. A novel zero-sequence model-based sensorless method for open-winding PMSM
    H. Zhan, Z.Q. Zhu, M. Odavic, Y. Li
    IEEE Trans. Industrial Electronics, 63(11), pp. 6777–6789, 2016. [Cited by: 68]
    Utilizes zero-sequence EMF for sensorless operation, increasing drive robustness.
  8. Efficiency enhancement of general AC drives by remanufacturing induction motors
    R. Ni, D. Xu, G. Wang, X. Gui, G. Zhang, H. Zhan, C. Li
    IEEE Trans. Industrial Electronics, 63(2), pp. 808–820, 2016. [Cited by: 68]
    Proposes cost-effective conversion of IMs into IPMs to boost system efficiency.
  9. Modular PM machines with alternate teeth having tooth tips
    G.J. Li, Z.Q. Zhu, M.P. Foster, D.A. Stone, H.L. Zhan
    IEEE Trans. Industrial Electronics, 62(10), pp. 6120–6130, 2015. [Cited by: 67]
    Investigates novel modular machines for performance and fault tolerance.
  10. Performance comparison of doubly salient reluctance machine topologies
    X.Y. Ma, G.J. Li, G.W. Jewell, Z.Q. Zhu, H.L. Zhan
    IEEE Trans. Industrial Electronics, 63(7), pp. 4086–4096, 2016. [Cited by: 65]
    Assesses different reluctance machine designs under sinewave excitation.

Conclusion

Prof. Zhan is a strong and deserving candidate for the Best Researcher Award, with a proven track record of innovation, impactful research, and industry-oriented contributions.