Dr. Yumin Qian | Computational Chemistry | Chemical Scientist Award
associate professor at Beijing Institute of technology, China.
Dr. Yumin Qian is an accomplished physicist and researcher specializing in solid-state physics, electrochemistry, and materials computation. He currently serves as an Associate Professor at the School of Physics, Beijing Institute of Technology, where he continues to contribute significantly to the advancement of energy materials and electrochemical systems. With a strong academic foundation and extensive international research experience, Dr. Qian has established himself as a prominent figure in the fields of energy storage and conversion. His career trajectory spans research appointments in China, Japan, and the United States, providing him with a global perspective on scientific collaboration and innovation. Dr. Qian’s research is primarily focused on surface and interface electrochemistry, as well as material simulations for advanced batteries and catalytic systems. His dedication to developing sustainable energy technologies has positioned him as a leading scientist whose work bridges theoretical modeling and experimental application in modern materials science.
Professional Profile
Education
Dr. Yumin Qian began his academic journey in physics at HuaZhong University of Science and Technology (HUST), Wuhan, China, where he earned his Bachelor’s degree. His undergraduate studies laid a strong foundation in physics, inspiring him to pursue advanced research in solid-state physics. Following this, he was admitted to the prestigious Institute of Physics, Chinese Academy of Sciences (CAS), where he pursued both his Master’s and Ph.D. degrees . At CAS, Dr. Qian trained at the Laboratory of Condensed Matter Theory and Materials Computation, gaining expertise in computational physics, materials modeling, and condensed matter theory. His doctoral research emphasized the theoretical and computational aspects of materials science, particularly as applied to electrochemical energy systems. This rigorous academic training at one of China’s leading scientific institutions provided him with advanced skills in solid-state physics and material simulations, forming the basis of his future career in electrochemical materials research.
Experience
Dr. Yumin Qian possesses a rich and diverse professional background that spans academia and advanced research institutes worldwide. After completing his Ph.D., he joined the Fuel Cell Cutting-Edge Center Technology Research Association (FC-Cubic) Ltd. in Tokyo, Japan, as a Research Scientist, where he worked on innovative fuel cell technologies. He also served as a Senior Researcher at the Energy Technology Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Japan, deepening his expertise in energy technologies. His international research trajectory continued with postdoctoral appointments at Soochow University and the Texas Materials Institute at the University of Texas at Austin, focusing on materials for electrochemical energy storage. In 2021, he joined the School of Physics at Beijing Institute of Technology as an Associate Professor. His career reflects a consistent commitment to advancing electrochemical energy storage and conversion technologies.
Professional Development
Throughout his career, Dr. Yumin Qian has consistently engaged in professional development through international collaborations, interdisciplinary research, and academic appointments. His early postdoctoral research experiences at Soochow University and the University of Texas at Austin allowed him to expand his knowledge beyond theoretical materials physics into applied energy storage systems. These opportunities helped him to integrate advanced computational techniques with experimental investigations, strengthening his interdisciplinary approach. His time at FC-Cubic and AIST in Japan further honed his expertise in industrial and applied research, bridging the gap between fundamental physics and real-world energy technologies. At Beijing Institute of Technology, Dr. Qian continues to develop his academic leadership by mentoring students, publishing scholarly works, and participating in global research initiatives. His professional growth reflects a trajectory of continuous learning, skill enhancement, and adaptation to evolving scientific challenges, ensuring his relevance and contribution to both academic and industrial advancements in energy materials.
Skills & Expertise
Dr. Yumin Qian’s expertise lies at the intersection of solid-state physics, materials science, and electrochemistry. He has advanced skills in surface and interface electrochemistry, with a focus on the mechanisms that drive energy storage and conversion. His proficiency in material simulation and computational modeling allows him to predict, design, and optimize materials for next-generation batteries, catalysts, and energy conversion devices. Dr. Qian’s research extends across multiple electrochemical systems, including lithium, sodium, and magnesium batteries, as well as catalytic systems involving electro-, photo-, plasma-, and thermo-catalysis. His international work experience has equipped him with strong cross-cultural collaboration skills, while his academic positions highlight his teaching and mentoring abilities. Combining theoretical insight with practical application, Dr. Qian demonstrates strong analytical, problem-solving, and research leadership skills. His expertise in both computational and experimental approaches makes him a versatile scientist capable of addressing complex challenges in energy technology and sustainable materials research.
Resarch Focus
Dr. Yumin Qian’s research is primarily dedicated to advancing electrochemical energy storage and conversion technologies. His work emphasizes surface and interface electrochemistry, where he investigates the fundamental processes governing energy device performance and stability. By employing state-of-the-art material simulation techniques, he explores the atomic-level interactions and electronic structures that influence electrochemical reactions. His studies extend to catalytic systems, including electro-, photo-, plasma-, and thermo-catalysis, aiming to improve the efficiency and sustainability of energy conversion. Dr. Qian also focuses on the design and optimization of electrode materials for lithium, sodium, and magnesium batteries, addressing the growing demand for safe, high-capacity, and cost-effective energy storage solutions. His integrated approach bridges computational modeling with experimental insights, enabling the development of innovative materials that can meet the challenges of clean energy. This research focus highlights his commitment to sustainable technologies and his role in shaping the future of energy science.
Awards & Recognitions
While specific awards and recognitions are not explicitly listed in Dr. Yumin Qian’s CV, his professional trajectory reflects notable accomplishments and recognition in his field. Earning positions at internationally respected institutions such as the Chinese Academy of Sciences, AIST in Japan, and the University of Texas at Austin demonstrates the high regard in which his expertise is held. His appointment as an Associate Professor at Beijing Institute of Technology is itself a recognition of his academic and research contributions to physics and materials science. Furthermore, his publication record, as reflected in his Google Scholar profile, underscores his influence and visibility within the scientific community. His participation in global research projects and collaborations indicates recognition by peers and institutions that value his expertise. Collectively, his academic appointments, international research experience, and contributions to electrochemical materials science serve as implicit acknowledgments of his standing as a respected researcher in the field.
Publication Top Notes
Title: Defect engineering metal‐free polymeric carbon nitride electrocatalyst for effective nitrogen fixation under ambient conditions
Authors: C Lv, Y Qian, C Yan, Y Ding, Y Liu, G Chen, G Yu
Year: 2018
Citations: 807
Title: Dual tuning of Ni–Co–A (A= P, Se, O) nanosheets by anion substitution and holey engineering for efficient hydrogen evolution
Authors: Z Fang, L Peng, Y Qian, X Zhang, Y Xie, JJ Cha, G Yu
Year: 2018
Citations: 516
Title: Polyanthraquinone as a reliable organic electrode for stable and fast lithium storage
Authors: Z Song, Y Qian, ML Gordin, D Tang, T Xu, M Otani, H Zhan, H Zhou, …
Year: 2015
Citations: 480
Title: O-coordinated W-Mo dual-atom catalyst for pH-universal electrocatalytic hydrogen evolution
Authors: Y Yang, Y Qian, H Li, Z Zhang, Y Mu, D Do, B Zhou, J Dong, W Yan, Y Qin, …
Year: 2020
Citations: 431
Title: Enhanced Surface Interactions Enable Fast Li+ Conduction in Oxide/Polymer Composite Electrolyte
Authors: N Wu, PH Chien, Y Qian, Y Li, H Xu, NS Grundish, B Xu, H Jin, YY Hu, …
Year: 2020
Citations: 384
Title: Poly (benzoquinonyl sulfide) as a high‐energy organic cathode for rechargeable Li and Na batteries
Authors: Z Song, Y Qian, T Zhang, M Otani, H Zhou
Year: 2015
Citations: 352
Title: A quinone-based oligomeric lithium salt for superior Li–organic batteries
Authors: Z Song, Y Qian, X Liu, T Zhang, Y Zhu, H Yu, M Otani, H Zhou
Year: 2014
Citations: 309
Title: Sulfurized polyacrylonitrile cathodes with high compatibility in both ether and carbonate electrolytes for ultrastable lithium–sulfur batteries
Authors: X Wang, Y Qian, L Wang, H Yang, H Li, Y Zhao, T Liu
Year: 2019
Citations: 279
Title: Study of the lithium/nickel ions exchange in the layered LiNi0.42Mn0.42Co0.16O2 cathode material for lithium ion batteries: experimental and first-principles calculations
Authors: H Yu, Y Qian, M Otani, D Tang, S Guo, Y Zhu, H Zhou
Year: 2014
Citations: 255
Title: Bridging Interparticle Li+ Conduction in a Soft Ceramic Oxide Electrolyte
Authors: WP Chen, H Duan, JL Shi, Y Qian, J Wan, XD Zhang, H Sheng, B Guan, …
Year: 2021
Citations: 222
Title: New Insights into Improving Rate Performance of Lithium-Rich Cathode Material
Authors: Y Wang, Z Yang, Y Qian, L Gu, H Zhou
Year: 2015
Citations: 221
Title: Multifunctional active‐center‐transferable platinum/lithium cobalt oxide heterostructured electrocatalysts towards superior water splitting
Authors: X Zheng, P Cui, Y Qian, G Zhao, X Zheng, X Xu, Z Cheng, Y Liu, SX Dou, …
Year: 2020
Citations: 212
Title: Room‐temperature all‐liquid‐metal batteries based on fusible alloys with regulated interfacial chemistry and wetting
Authors: Y Ding, X Guo, Y Qian, L Xue, A Dolocan, G Yu
Year: 2020
Citations: 171
Title: Polar polymer–solvent interaction derived favorable interphase for stable lithium metal batteries
Authors: J Bae, Y Qian, Y Li, X Zhou, JB Goodenough, G Yu
Year: 2019
Citations: 169
Title: An Ultrastable Anode for Long‐Life Room‐Temperature Sodium‐Ion Batteries
Authors: H Yu, Y Ren, D Xiao, S Guo, Y Zhu, Y Qian, L Gu, H Zhou
Year: 2014
Citations: 169
Conclusion:
Overall, Dr. Yumin Qian is highly suitable for the Research for Chemical Scientist Award. His interdisciplinary expertise, impactful publications, international collaborations, and contributions to energy storage and conversion technologies make him an outstanding candidate. With further emphasis on global leadership roles, technology translation, and broader recognition, he could elevate his profile even more. Nonetheless, his current achievements already place him among the most promising and influential chemical scientists of his generation, and he is well-deserving of this recognition.