Lei Dong | Advanced Materials Engineering | Research Excellence Award

Prof. Lei Dong | Advanced Materials Engineering | Research Excellence Award

Northwestern Polytechnical University | China

Prof. Lei Dong is a leading materials scientist specializing in graphene-based technologies, energy storage, and ion-transport systems. He earned his PhD in Polymer Chemistry and Physics in 2015 and subsequently gained international research experience through postdoctoral and visiting appointments at major research-intensive universities, before progressing to faculty roles and attaining a full professorship. His academic career reflects a strong trajectory from fundamental two-dimensional (2D) materials synthesis to application-driven research in Li-ion batteries and ion-sieving membranes.  He has secured more than 10 competitive research grants and filed over 30 national invention patents, underscoring both scientific excellence and translational impact. His work has been recognized through multiple prestigious talent and innovation awards at the provincial level. Overall, Prof. Dong’s contributions significantly advance scalable 2D materials, high-performance energy storage, and membrane technologies, positioning him as a prominent figure in contemporary materials science and engineering.

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Featured Publications



Synthesis and Reduction of Large-Sized Graphene Oxide Sheets
L. Dong, J. Yang, M. Chhowalla, K. P. Loh.
Chemical Society Reviews, 2017


Interface-Confined Hydrogen Evolution Reaction in Zero-Valent Metal Nanoparticles–Intercalated MoS₂
Z. Chen, K. Leng, X. Zhao, S. Malkhandi, W. Tang, B. Tian, L. Dong, et al.
Nature Communications, 2017


A Non-Dispersion Strategy for Large-Scale Production of Ultra-High-Concentration Graphene Slurries in Water
L. Dong, Z. Chen, X. Zhao, J. Ma, S. Lin, M. Li, et al.
Nature Communications, 2018


Spontaneous Exfoliation and Tailoring of MoS₂ in Mixed Solvents
L. Dong, S. Lin, L. Yang, J. Zhang, C. Yang, D. Yang, H. Lu.
Chemical Communications, 2014

Pan Li | Chemistry and Materials Science | Best Researcher Award

Dr. Pan Li | Chemistry and Materials Science | Best Researcher Award

Academy of Military Science of the People’s Liberation Army | China

Li Pan is a PhD candidate and active researcher at the Academy of Military Sciences, specializing in computational and experimental materials science. Her academic training and doctoral education are grounded in advanced materials engineering, with a strong emphasis on first-principles calculations and microstructural analysis of alloys. Through her research experiencez, she has developed a solid theoretical and practical understanding of alloy design, phase stability, and structure–property relationships at the atomic and microstructural scales. Li Pan has authored more than 10 peer-reviewed scientific articles published in high-impact journals, including Nature Communications, reflecting the quality and relevance of her work. In addition to journal articles, she has authored one scholarly monograph, highlighting her ability to synthesize complex scientific knowledge into cohesive academic work. Her research interests include density functional theory, alloy microstructure evolution, and computational materials modeling. She has received academic recognition for her research productivity and innovation during her doctoral studies. Overall, Li Pan represents an emerging scholar in materials science whose work contributes to advancing the fundamental understanding and design of advanced alloy systems.

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Featured Publications

Pan, L., Huang, L., Wang, X., Xu, W., Zhou, Y., & Chen, J. (2025). Pressure effect on structural, mechanical, electronic and thermodynamic properties of Cr–Co sigma phase using first-principles method. Philosophical Magazine.

Pan, L., Chen, J., Huang, L., & Zhang, J. (2024). First-principles study of structural, mechanical, electronic properties and Debye temperature of NbCo₂ Laves phases under pressure. Physica B: Condensed Matter, —, 415683.

Pan, L., Chen, J., Huang, L., & Zhang, J. (2023). Site occupancy and electronic properties of NbCo₂ Laves phases doped with Re. Computational and Theoretical Chemistry, —, 114389.

Pan, L., Huang, L., Chen, J., & Zhang, J. (2023). Site occupancy of Ru in μ phases: A density functional theory study. International Journal of Modern Physics B, —, 23502648.

Pan, L., Huang, L., Chen, J., & Zhang, J. (2022). First-principles study of Co₂₁W₁₈ with pressure effect: Structural, mechanical, electronic properties and Debye temperature. Materials Today Communications, —, 104276.