Assoc. Prof. Dr. Li-Bo Chen | Fluid Interaction | Best Researcher Award

Assoc. Prof. Dr. Li-Bo Chen | Fluid Interaction | Best Researcher Award

Associate Professor | College of Chemistry and Chemical Engineering, Chongqing University of Science and Technology | China

Li-Bo Chen – Associate Professor at the College of Chemistry and Chemical Engineering, Chongqing University of Science and Technology, distinguished researcher in polymer processing, computational fluid dynamics, and multiphase flow, recognized for his innovative studies on the formation mechanism of hierarchically crystalline structures under coupled external fields in multi-melt multi-injection molding through combined simulation and experiment, his pioneering simulation and experimental investigations into the formation and evolution of hierarchical crystalline structures at the multi-melt flow interface, his detailed analysis on the effects of convective schemes and geometric reconstruction schemes on the interface of multiple melt flows in polymer systems, his advanced exploration of particle migration dynamics toward interfaces and the development of tailored directional migration strategies in multiphase melt processing, his collaborative work on multifunctional thermal management materials with excellent heat dissipation and generation capability for next-generation electronics, his contribution to the design of three-dimensional printing phase-change-based heat sinks for cooling electronic devices, his leadership in addressing brittle fracture in polylactic acid blown film processing, his development of novel multi-melt multi-shot injection molding platforms, his significant contributions in resolving numerical diffusion and oscillation in non-Newtonian fluid interfacial simulations, his impactful discoveries on particle migration mechanisms in multiphase melt processing, his entrepreneurial achievement in commercializing solid-solid phase change powders for building energy efficiency through a spin-off company, his strong record of securing national and provincial research funding including competitive grants from the National Natural Science Foundation of China, his successful collaborations with leading enterprises such as PetroChina and Sinopec on new material development and novel equipment R&D, his authorship of numerous SCI-indexed publications, his granted patents and pending applications, his active memberships in professional committees in chemical, pharmaceutical, and advanced materials fields, and his growing reputation as a versatile researcher and innovator whose work bridges fundamental theory, computational modeling, industrial applications, and sustainable technology development.

Profile:  Orcid

Featured Publications:

Chen, L.-B., Tao, Z.-X., Song, C., Lu, Z., Yi, Y.-X., Cao, Y., Huang, Y.-H., Liu, Z.-Y., & Yang, M.-B. (2025). Dynamics of particle migration toward interface and tailored directional migration strategy in multiphase melt processing. Polymer Composites.

Huang, Y., Chen, L., Zheng, S., Wu, X., Liu, L., Zhang, K., Ke, K., Liu, Z., Yang, W., & Yang, M. (2021). A facile and rapid approach to lotus-seedpod-structured electronic skin for monitoring diverse physical stimuli. Advanced Materials Technologies, 6(7), e2001084.

Chen, L.-B., Huang, Y.-H., Zhao, X., Liu, L., Gu, J.-D., Liu, Z.-Y., Yang, W., Fu, X.-R., & Yang, M.-B. (2021). Simulation and experimental studies on the formation and evolution of hierarchical crystalline structures at the multi-melt flow interface. Composites Part A: Applied Science and Manufacturing, 144, 106269

Huang, Y., Chen, L., Zheng, S., Wu, X., Liu, L., Ke, K., Liu, Z., Yang, W., & Yang, M. (2020). A new insight into multi-tier structure tailoring: Synchronous utilization of particle migration and incompatible interface separation under shear flow. Polymer, 202, 122384.

Chen, L.-B., Huang, Y.-H., Liu, L., Zhao, X., Liu, Z.-Y., Yang, W., & Yang, M.-B. (2020). Formation mechanism of hierarchically crystalline structures under coupled external fields in multi-melt multi-injection molding: Simulation and experiment. Composites Part B: Engineering, 188, 107770.

Feng, C.-P., Chen, L.-B., Tian, G.-L., Bai, L., Bao, R.-Y., Liu, Z.-Y., Ke, K., Yang, M.-B., & Yang, W. (2020). Robust polymer-based paper-like thermal interface materials with a through-plane thermal conductivity over 9 W m−1 K−1. Chemical Engineering Journal, 388, 123784.

Huang, Y., Liu, Z., Chen, R., Zheng, S., Feng, C., Chen, L., Yang, W., & Yang, M. (2019). Highly anisotropic functional conductors fabricated by multi-melt multi-injection molding (M³IM): A synergetic role of multiple melt flows and confined interface. Composites Science and Technology, 171, 263–270.

Feng, C.-P., Chen, L.-B., Tian, G.-L., Bai, L., Bao, R.-Y., Liu, Z.-Y., Ke, K., Yang, M.-B., & Yang, W. (2019). Multifunctional thermal management materials with excellent heat dissipation and generation capability for future electronics. ACS Applied Materials & Interfaces, 11(20), 18739–18745.

Yaguang Zhang | Mechanism of ion conduction in solid electrolyte | Best Researcher Award

Dr. Yaguang Zhang | Mechanism of ion conduction in solid electrolyte | Best Researcher Award

Assistant research fellow , central south university, China

Dr. Yaguang Zhang is an Assistant Research Fellow at Central South University, China, specializing in functional materials for energy storage. His research focuses on solid-state electrolytes and silicon-based anodes for next-generation high-energy-density lithium-ion batteries. With a Ph.D. from Zhejiang University, he has contributed significantly to advancing solid-state battery technologies. Previously, he served as a Vice-General Manager of R&D at Zhejiang Li Chen New Material Technology Co., Ltd. and completed a postdoctoral fellowship at Zhejiang University. Dr. Zhang has published extensively in high-impact journals such as Advanced Energy Materials, Chemical Engineering Journal, and Journal of Power Sources. His work aims to enhance battery safety, efficiency, and longevity through innovative material engineering.

Profile

Scopus 

Education 🎓

Dr. Yaguang Zhang has a strong academic foundation in materials science and engineering. He earned his Ph.D. in Materials Physics and Chemistry from Zhejiang University (2015-2018) under Professor Deren Yang, focusing on advanced energy storage materials. He completed his Master’s degree (2012-2015) in Materials Science and Engineering at Zhejiang University, supervised by Professor Hui Zhang, where he worked on solid-state electrolytes. His Bachelor’s degree (2008-2012) was from Southeast University, where he studied under Professor Hengcheng Liao, gaining expertise in materials science fundamentals. His educational background has enabled him to develop innovative materials for lithium-ion and solid-state batteries, contributing to advancements in battery technology.

Experience 💼

Dr. Yaguang Zhang has extensive experience in academic research and industrial R&D. He is currently an Assistant Research Fellow at Central South University (2021-Present), focusing on solid-state electrolytes and silicon anodes for high-performance batteries. Before this, he was the Vice-General Manager of R&D at Zhejiang Li Chen New Material Technology Co., Ltd. (2020-2021), where he led cutting-edge battery materials research. He also completed a postdoctoral fellowship (2018-2020) at Zhejiang University under Professor Deren Yang, working on next-generation energy storage materials. His career blends academic excellence and industrial expertise, contributing to the development of safer, more efficient, and high-energy-density batteries.

Awards and Awards 🏆

Dr. Yaguang Zhang has received several accolades for his contributions to battery materials research. He has been recognized for his high-impact publications in top-tier journals, showcasing his pioneering work in solid-state electrolytes. His contributions to advanced lithium-ion battery technology have been acknowledged through grants and research funding for battery innovation. As an Assistant Research Fellow, he has been instrumental in mentoring researchers and leading innovative projects in solid-state battery development. His work has been widely cited, reflecting its significance in next-generation energy storage solutions.

Research Focus

Dr. Yaguang Zhang’s research is centered on functional materials for energy storage, with a specific emphasis on solid-state electrolytes and silicon-based anodes for next-generation lithium-ion batteries. His work aims to enhance battery performance, lifespan, and safety by developing high ionic conductivity materials and stabilizing lithium interfaces. He has introduced novel polymer electrolytes that improve ionic transport and electrochemical stability. Additionally, his research on Si-based anodes enhances energy density and cycle life, paving the way for more efficient and sustainable battery technologies. His contributions have been instrumental in advancing solid-state battery development, with applications in electric vehicles, grid storage, and portable electronics.

Publications 📚

  • “Atomic-Level Regulation of SiC₄ Units Enable High Li⁺ Dynamics and Long-Life Micro-Size SiCₓ Anodes”

  • “Weakening Lithium-Ion Coordination in Poly(Ethylene Oxide)-Based Solid Polymer Electrolytes for High Performance Solid-State Batteries”

Conclusion

Dr. Yaguang Zhang’s groundbreaking research in functional materials for energy storage has made a significant impact on the field of battery technology. His high-quality publications, industrial leadership, and commitment to scientific innovation strongly justify his nomination for the Best Researcher Award. His work bridges the gap between academic research and real-world applications, making him a deserving candidate for this prestigious recognition.