Moritz Hoffmann | Engineering and Technology | Innovative Research Award

Innovative Research Award

Moritz Hoffmann
Technical University Berlin, Germany

Moritz Hoffmann
Affiliation Technical University Berlin
Country Germany
Scopus ID 59460423200
Documents 6
Citations 19
h-index 2
Subject Area Engineering and Technology
Event Popular Engineer Awards

Moritz Hoffmann is an industrial PhD candidate at the Technical University Berlin and a Senior Consultant at EY-Parthenon, specializing in remanufacturing systems, operational turnaround, and control engineering. His research bridges mathematical modelling and industrial practice, with a focus on sustainable manufacturing and resilient production networks. [1] His scholarly profile indexed in Scopus records 6 documents, 19 citations, and an h-index of 2 within Engineering and Technology. [2]

Abstract

This article evaluates the academic and professional profile of Moritz Hoffmann in the context of the Innovative Research Award associated with the Popular Engineer Awards. Hoffmann’s work addresses end-of-use decision-making, remanufacturing planning, and decentralized control optimization, contributing to sustainable manufacturing and circular economy research. [1] His Scopus record documents 6 documents, 19 citations, and an h-index of 2, reflecting emerging scholarly influence in Engineering and Technology. [2]

Keywords

  • Remanufacturing
  • Circular Economy
  • Control Engineering
  • Sustainable Manufacturing
  • Operations Research
  • Industrial Engineering

Introduction

The transition toward circular manufacturing has intensified interest in remanufacturing systems, which recover value from end-of-use products while reducing environmental burdens. Moritz Hoffmann’s research addresses these challenges by abstracting real-world remanufacturing complications, such as supply uncertainty, into mathematical models for planning and control optimization. [3] His industrial experience at Robert Bosch GmbH and EY-Parthenon informs a practice-oriented research agenda that connects control theory with operational profitability. [1]

Research Profile

Moritz Hoffmann is an Industrial PhD Candidate in Remanufacturing at the Chair of Control Engineering and Systems Theory, Technical University Berlin, in cooperation with Robert Bosch GmbH. His doctoral research develops novel mathematical models for centralized and decentralized planning and control optimization to enhance operational profitability in remanufacturing systems. [2] He holds a double-degree M.Sc. in Digital Industrial Management and Engineering and an M.Eng. in Engineering Management from ESB Business School and Stellenbosch University, and a B.Sc. in Industrial Engineering from Technische Hochschule Mittelhessen. [1]

Research Contributions

Moritz Hoffmann’s principal contribution is the development of optimization frameworks for end-of-use decision-making in remanufacturing, published in the Journal of Remanufacturing. [3] His work has been presented at four leading international control conferences, including IEEE CCTA, translating technical results for expert audiences and supporting sustainable, resilient manufacturing. [2] In industry, he led a remanufacturing project for electric power steering systems with a project volume of €1.2M, bridging customer R&D communication, concept development, and on-site industrialization. [1]

Publications

Moritz Hoffmann, M., & Knorn, S. (2026). Optimization of end-of-use decision-making. Journal of Remanufacturing. The study develops mathematical models for end-of-use decisions, improving remanufacturing profitability and circularity, and was presented at leading international control conferences including IEEE CCTA. https://doi.org/10.1007/s13243-026-00173-2 [3] [2]

Research Impact

According to Scopus, Moritz Hoffmann’s work has received 19 citations across 6 documents, yielding an h-index of 2 within Engineering and Technology. [2] While these metrics indicate an early-career profile, his publications appear in peer-reviewed venues and international control conferences, suggesting growing recognition in remanufacturing and sustainable manufacturing research. [1]

Award Suitability

The Popular Engineer Awards recognize engineers who demonstrate innovation and practical impact. Hoffmann’s combination of peer-reviewed research, conference dissemination, and industrial implementation aligns with the award’s emphasis on engineering excellence and societal benefit. [4] His contributions to remanufacturing and circular economy research support a credible nomination for the Innovative Research Award category. [3]

Conclusion

Moritz Hoffmann represents an emerging researcher whose work integrates control engineering, operations management, and sustainable manufacturing. His Scopus-indexed output of 6 documents, 19 citations, and h-index of 2, combined with industrial project leadership, supports consideration for the Innovative Research Award. [2] Continued publication and conference engagement are expected to strengthen his scholarly impact in remanufacturing research. [1]

References

  1. Elsevier. (n.d.). Scopus author details: Moritz Hoffmann, Author ID 59460423200. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=59460423200
  2. Scopus. (n.d.). Citation metrics and document counts for Moritz Hoffmann. Elsevier Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=59460423200
  3. Hoffmann, M., & Knorn, S. (2026). Optimization of end-of-use decision-making. Journal of Remanufacturing.
    https://doi.org/10.1007/s13243-026-00173-2
  4. Popular Engineer Awards. (n.d.). Award criteria and nomination information.
    https://popularengineer.org/

Christos Mytafides | Materials Engineering Award | Excellence in Innovation

Dr Christos Mytafides | Materials Engineering Award | Excellence in Innovation

Dr Christos Mytafides , University of Ioannina, Greece

Christos Mytafides is a distinguished researcher in advanced multifunctional materials and energy-harvesting technologies. Born on July 14, 1985, in Xanthi, Greece, he currently resides in Chania, Crete. Christos earned his Ph.D. from the University of Ioannina, focusing on printed electronics and energy-harvesting composites. His work is well-regarded for its innovation in integrating advanced materials into structural composites. He has held various roles, including Postdoctoral Research Scientist at Technical University of Crete and R&D Engineer at ARCO/Murray. Christos has been a Fulbright Scholar at the University of Miami and has collaborated with leading institutions like Eindhoven University of Technology. His research has led to multiple publications and patents, and he continues to push the boundaries of material science and sustainability.

Publication Profile

Google Scholar

Education

Christos Mytafides holds a Ph.D. in Materials Science & Engineering from the University of Ioannina, where he specialized in advanced multifunctional energy-harvesting materials (2018-2023). His Master’s Degrees include one in Advanced Materials from the University of Ioannina (2016-2018), focusing on optoelectronic and magnetic materials, and another in Environmental Engineering & Science from Democritus University of Thrace (2013-2015), emphasizing energy-efficient designs. He also has a Bachelor’s Degree in Structural Engineering from the International Hellenic University (2003-2009), where he studied structural analysis and restoration. Additionally, Christos completed online courses in Quantum Physics, Sustainable Energy, and other relevant fields from prestigious institutions like Stanford and MIT. His comprehensive education reflects a strong foundation in both theoretical and applied aspects of materials science and engineering.

Experience 

Christos Mytafides has a diverse professional background in materials science and engineering. Currently a Postdoctoral Research Scientist at Technical University of Crete, he works on advanced composite materials. Previously, he served as a Research & Development Engineer at ARCO/Murray, focusing on structural and sustainability engineering. He was involved in several projects at the University of Ioannina, including Horizon 2020 and NSRF projects related to energy harvesting and smart materials. Christos also gained valuable experience during his Fulbright Scholarship at the University of Miami, researching multifunctional composites. His work as a Lab Assistant and Teaching Assistant at various universities, including Eindhoven University of Technology and Democritus University of Thrace, further underscores his expertise in both research and education. His experience spans across different research laboratories and practical engineering roles, reflecting a robust career in material science.

Awards and Honors

Christos Mytafides has received significant recognition for his contributions to materials science and energy-harvesting technologies. He was awarded the Fulbright Scholarship for his research at the University of Miami, which highlights his innovative work in multifunctional composites. His research has been recognized in various prestigious journals, underscoring the impact of his contributions to advanced materials and energy-harvesting technologies. Christos has also been involved in notable projects such as Horizon 2020 and NSRF, further cementing his reputation in the field. His work on advanced composites and energy-harvesting materials has earned him several accolades, including publication in high-impact journals like Materials Advances and Journal of Power Sources. His commitment to advancing the field of materials science is reflected in the numerous awards and honors he has received throughout his career.

Research Focus 

Christos Mytafides’s research focuses on advanced multifunctional materials and energy-harvesting technologies. His work primarily explores the integration of printed electronics with structural composites to develop innovative energy-harvesting solutions. He is particularly interested in developing and characterizing materials that can efficiently convert and store energy. His research includes the design and fabrication of high-performance solar cells, thermoelectric generators, and other energy-harvesting devices. Christos’s work also encompasses optoelectronic and magnetic materials, with applications in sustainable energy systems and smart textiles. His contributions to the field have led to significant advancements in the efficiency and functionality of composite materials. By combining theoretical knowledge with practical applications, Christos aims to push the boundaries of materials science and engineering, addressing contemporary challenges in energy sustainability and advanced material development.

Publication Top Notes

“A hierarchically modified fibre-reinforced polymer composite laminate with graphene nanotube coatings operating as an efficient thermoelectric generator” 🌐 Energy Advances, 2024

“Integrated architectures of printed electronics with energy-harvesting capabilities in advanced structural composites” 📚 University of Ioannina, 2023

“Carbon fiber/epoxy composite laminates as through-thickness thermoelectric generators” 🛠️ Composites Science and Technology, 2023

“Fully printed and flexible carbon nanotube-based thermoelectric generator capable for high-temperature applications” ⚡ Journal of Power Sources, 2022

“Printed single-wall carbon nanotube-based Joule heating devices integrated as functional laminae in advanced composites” 🔬 ACS Applied Materials & Interfaces, 2021

“A high performance flexible and robust printed thermoelectric generator based on hybridized Te nanowires with PEDOT: PSS” 🔋 Applied Energy, 2021