专家人才库
陈忠伟 研究员

学历:博士研究生

学科:化学工程

部门:DNL2900组群

电话:0411-39787106

邮箱:zwchen@dicp.ac.cn

地址:大连市高新园区旅顺中路568号

简历介绍

陈忠伟,男,研究员,博士生导师,能源催化转化全国重点实验室主任,中国科学院大连化物所动力电池与系统研究部部长、动力电池与系统研究中心主任。加拿大皇家科学院院士,加拿大工程院院士,加拿大皇家科学院委员会委员,国际电化学能源科学院(IAOEES)副主席。2008年获美国加州大学河滨分校博士学位;2008-2023年在加拿大滑铁卢大学任教,先后担任助理教授、副教授、教授;2017年至2023年担任加拿大清洁能源先进材料领域首席科学家(Canada Research Chair, Tier 1)。曾任美国化学会旗下知名期刊《ACS Applied Materials & Interfaces》副主编,现任中国化学会期刊《Renewables》主编,并担任多个国际学术期刊编委。

陈忠伟长期致力于电化学能源材料与系统的研究和产业化,在燃料电池、锂/钠离子电池、固态电池、锌空气电池、氢混动力电源系统以及AI+电化学储能等领域取得了系统性、原创性成果。作为第一作者或通讯作者,陈忠伟院士在国际顶级期刊发表论文500余篇,总被引次数超过72,000次,H因子达159。他出版学术著作5部,申请/授权中国、美国及国际专利200余项。陈忠伟2016年荣获加拿大最高国家科研奖“E.W.R. Steacie Memorial Fellowship”;2017年当选加拿大工程院院士,并获得由加拿大皇家科学院颁发的“卢瑟福纪念奖章”,以表彰其在先进电池材料和电池方向所作出的杰出贡献;2019年当选加拿大皇家科学院院士。2018年至2025年连续八年入选科睿唯安“全球高被引科学家”(Highly Cited Researchers, HCR)。





研究方向
职务
社会任职
获奖及荣誉
代表论著

1. Jingxuan Ren, Dongdong Wang, Yufeng Chen, Renming Liu, Xinli Guo, Dan Luo, Zhongwei Chen. Anion Coordination Transition Enabled by Ion-Dipole Interactions At Low Temperatures. Journal of the American Chemical Society, 2026, 148.18: 19128-19137.

2. Jingxuan Ren, Dongdong Wang, Qingying Li, Yizhou Liu, Xinli Guo, Qianyi Ma, Yihang Nie, Haozhen Dou, Dongxin Wang, Dan Luo, Zhongwei Chen. Achieving Bichelating Solvation Structure Toward Fast Charging and Long Lifespan Aqueous Zn-Ion Batteries. Advanced Materials, 2026, 38(9), e05049.

3. Jingxuan Ren, Jie Zhang, Yufeng Chen, Renming Liu, Chuangwei Liu, Xinli Guo, Dan Luo, Dongdong Wang & Zhongwei Chen. Multiphase aqueous soggy sand electrolyte for zinc metal batteries applications at elevated temperatures. Nature Communications, 2025, 17.1: 309.

4. Lichao Tan, Shaojian Zhang, Qianyi Ma, Renming Liu, Linjiang Xue, Qingying Li, Jing Wei, Xin Wang, Dan Luo, Zhongwei Chen. Iodide Anion Anchoring by Silver Nanoparticles Enables Shuttle‐Free Zinc‐Iodine Batteries. Angewandte Chemie International Edition, 2026, 138.29: e8096588..

5. J. Wang, X. Zhang, J. Liu, X. Wang, Y. Nie, K. Zong, X. Zhang, C. Zhao, L. Yang, X. Wang, Z. Chen, High-Spin Cobalt Enables Strong Metal-Sulfur Orbital Hybridization for Accelerated Polysulfide Conversion in Lithium-Sulfur Batteries. Adv. Mater. 2025, 37, 2502075.

6. M. Liu, Y. Li, L. Yang, P. Zhao, J. Li, L. Tian, D. Cao, Z. Chen, Defect-Triggered Orbital Hybridization in FeMn Dual-Atom Catalysts Toward Sabatier-Optimized Oxygen Reduction. Angew. Chem. Int. Ed.. 2025, 64, e202505268.

7. L. He, Y. Shao, S. Li, Y. Nie, Y. Chu, G. Feng, X. Liu, Q. Li, D. Luo, X. Wang, Z. Chen, Topologically entangled network polymer electrolyte with ionophilic-protonation dual side chains for high-voltage lithium-metal batteries. Angew. Chem. Int. Ed. 2025, 64, e202507222.

8. Yang, T., Qin, S., Gao, S. et al. Electroinitiated interfacial healing for external pressure-free solid-state sodium metal batteries. Nat. Commun. 2025, 16, 9613.

9. Zhang, Y., Zhang, Z., Dou, H., Bai, Z., Zou, J., Wang, Y., ... & Chen, Z. Engineering Nanoscale Interfacial Solvation Inner‐Outer Configuration via Multi‐Group Synergy for Practical Zinc Batteries. Angewandte Chemie International Edition, 2025, 64(51), e202518035.

10. Li, Q., Luo, D., Ma, Q., Zheng, Z., Li, S., Xie, Y., & Chen, Z. Designing a bridging solvation structure using recessive solvents for high energy density aqueous zinc-ion batteries with 88% depth of discharge zinc rechargeability. Energy & Environmental Science, 2025, 18(3), 1489-1501.

11. Liu, J., Wu, Y., Wang, L., Ma, Q., Zhang, Q., Liu, C., Chen, Z. Stabilizing Cu0/Cu+ Interfaces via High-Entropy Electrochemical Potential Regulation Strategy for Enhanced CO2-to-Ethylene Conversion in Acidic Medium. Advanced Materials, 2025, 37(47), e10267.

12. Wang, D., Li, R., Zhang, S., Chen, Y., Zhang, J., Liao, C., Chen, Z. Unveiling Anion-Cation Interaction of Electrolyte for Long-Life Ah-Level Aqueous Zinc Metal Batteries. Angewandte Chemie, 2025, 138(5), e19668.

13. Tingzhou Yang, Dan Luo, Xinyu Zhang, Shihui Gao, Rui Gao, Qianyi Ma, Hey Woong Park, Tyler Or, Yongguang Zhang & Zhongwei Chen, Sustainable regeneration of spent cathodes for lithium-ion and post-lithium-ion batteries. Nature sustainability, 2024, 16(162), p.1-39.

14. P. Xu, M. Xu, J. Zhang, J. Zou, Y. Shi, D. Luo, D. Wang, H. Dou, Z. Chen, In-situ solid electrolyte interface via dual reaction strategy for highly reversible zinc anode. Angew. Chem. Int. Ed.2024, 63, e202407909.

15. Zhu, J., Xiao, M., Ren, D., Gao, R., Liu, X., Zhang, Z., Luo, D., Xing, W., Su, D., Yu, A. and Chen, Z., Quasi-Covalently Coupled Ni–Cu Atomic Pair for Synergistic Electroreduction of CO2. Journal of the American Chemical Society. 2024, 144(22), p.9661-9671. 

16. Zhang, X., Yang, T., Zhang, Y., Wang, X., Wang, J., Li, Y., Yu, A., Wang, X. and Chen, Z., Single Zinc Atom Aggregates: Synergetic Interaction to Boost Fast Polysulfide Conversion in Lithium‐Sulfur Batteries. Advanced Materials, 2023, 35(6), p.2208470.

17. Wen, G., Ren, B., Wang, X., Luo, D., Dou, H., Zheng, Y., Gao, R., Gostick, J., Yu, A. and Chen, Z., Continuous CO2 electrolysis using a CO2 exsolution-induced flow cell. Nature Energy,2022, pp.1-11.

18. Ren, B., Wen, G., Gao, R., Luo, D., Zhang, Z., Qiu, W., Ma, Q., Wang, X., Cui, Y., Ricardez–Sandoval, L., Yu, A. and Chen, Z., Nano-crumples induced Sn-Bi bimetallic interface pattern with moderate electron bank for highly efficient CO2 electroreduction. Nature communications, 2022, 13(1), pp.1-11.

19. Jiang, Y., Deng, Y.P., Liang, R., Chen, N., King, G., Yu, A. and Chen, Z., Linker-compensated metal–organic framework with electron delocalized metal sites for bifunctional oxygen electrocatalysis. Journal of the American Chemical Society, 2022, 144(11), pp.4783-4791.

20. Luo, D., Li, M., Ma, Q., Wen, G., Dou, H., Ren, B., Liu, Y., Wang, X., Shui, L., Chen, Z. Porous organic polymers for Li-chemistry-based batteries: functionalities and characterization studies, Chemical Society Reviews, 2022, 51,p.2917. 

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