Name |
Lei Wang |
|
Department |
Renewable Energy |
Title |
Associate professor |
Contact Information |
wangleicqu@cqu.edu.cn |
Biography:
Dr. Wang, associate professor, school of energy and power engineering, chongqing university, mainly focus on the research of novel energy storage nanomaterials and advanced energy storage devices. He has published more than 30 SCI papers in high-quality journals, and He has published more than 10 papers as first author or corresponding author in National Science Review, Energy Storage Materials, Advanced Functional Materials, Small, Journal of Materials Chemistry A and other journals (including 5 highly cited by ESI), with a total of more than 2120 citations, H-index is 21 (From Google Scholar data). He is a former guest editor of Chemistry-An Asian Journal (Wiley). In 2020, he won the second prize of the Hunan Provincial Natural Science Award (Rank II), and the third prize of the Natural Science Award of the Chinese Institute of Electronics in 2021 (Rank II).
Education Background:
2019.01-2022.03, Hunan University, Postdoc
2016.12-2018.04, University of California, Los Angeles, Visiting Ph.D.
2015.10-2016.12, Institute of Chemistry, Chinese Academy of Sciences, Visiting Ph.D.
2012.09-2018.06, Hunan University, Ph.D.
2008.09-2012.06, Shandong Jiaotong University, B.S.
Research Interests:
"Post-lithium" energy storage devices and their key materials;
High performance sodium/potassium ion battery;
Novel energy storage materials and advanced energy storage devices
Selected Publications:
[1] L. Wang, T. Wang, L. Peng, Y. Wang, M. Zhang, J. Zhou, M. Chen, J. Cao, H. Fei, X. Duan, J. Zhu*, X. Duan*, The Promises, Challenges and Pathways to Room-Temperature Sodium-Sulfur Batteries, National Science Review, 2022, 9, nwab050. (IF = 17.275, JCR Q1)
[2] J. Cao, J. Zhong, H. Xu, S. Li, H. Deng, T. Wang, L. Fan, X. Wang, L. Wang*, J. Zhu*, B. Lu, X. Duan*, N/S co-doped carbon nanosheet bundles as high-capacity anode for potassium-ion battery, Nano Research, 2021, 15, 2040-2046. (IF = 8.897, JCR Q1)
[3] J. Cao, H. Xu, J. Zhong, X. Li, S. Li, Y. Wang, M. Zhang, H. Deng, Y. Wang, C. Cui, Y. Cheng, L. Fan, L. Wang*, T. Wang*, J. Zhu*, B. Lu, A Dual Carbon Electrode Based High-Energy-Density Potassium-Ion Hybrid Capacitor, ACS Applied Materials & Interfaces, 2021, 13, 8497-8506. (IF = 9.229, JCR Q1)
[4] X. Li, M. Chen, L. Wang*, H. Xu, J. Zhong, M. Zhang, Y. Wang, Q. Zhang, L. Mei, T. Wang, J. Zhu*, B. Lu, X. Duan*, Nitrogen-doped carbon nanotubes as an anode for a highly robust potassium-ion hybrid capacitor, Nanoscale Horizons, 2020, 5, 1586-1595. (IF = 10.989, JCR Q1)
[5] L. Wang, X. Xie, K. N. Dinh, Q. Yan, J. Ma, Synthesis, characterizations, and utilization of oxygen-deficient metal oxides for lithium/sodium-ion batteries and supercapacitors, Coordination Chemistry Reviews, 2019, 397, 138-167. (IF = 22.315, JCR Q1, Highly cited paper)
[6] L. Wang, Z. Wei, M. Mao, H. Wang, Y. Li, J. Ma, Metal oxide/graphene composite anode materials for sodium-ion batteries, Energy Storage Materials, 2019, 16, 434-454. (IF = 17.789, JCR Q1, Highly cited paper)
[7] L. Wang, Y. Wang, M. Wu, Z. Wei, C. Cui, J. Liang, M. Mao, J. Zhang, X. Han, Q. Liu, J. Ma, Nitrogen, fluorine and boron ternary doped carbon fibers as cathode electrocatalysts for zinc-air batteries, Small, 2018, 14, 1800737. (IF = 13.281, JCR Q1, Highly cited paper)
[8] L. Wang, Y. Sun, L. Hu, J. Piao, J. Guo, A. Manthiram, J. Ma, A. Cao, Copper-substituted Na0.67Ni0.3-xCuxMn0.7O2 cathode materials for sodium-ion batteries with suppressed P2-O2 phase transition, Journal of Materials Chemistry A, 2017, 5, 8752-8761. (IF = 12.732, JCR Q1, Highly cited paper)
[9] L. Wang, C. Yang, S. Dou, S. Wang, J. Zhang, X. Gao, J. Ma, Y. Yu, Nitrogen-doped hierarchically porous carbon networks: synthesis and applications in lithium-ion battery, sodium-ion battery and zinc-air battery, Electrochimica Acta, 2016, 219, 592-603. (IF = 6.901, JCR Q2, Highly cited paper)
[10] H. Xu#, L. Wang#, J. Zhong, T. Wang, J. Cao, Y. Wang, X. Li, H. Fei, J. Zhu, X. Duan, Ultra-stable and high-rate lithium ion batteries based on metal-organic framework-derived In2O3 nanocrystals/ hierarchically porous nitrogen-doped carbon anode, Energy & Environmental Materials, 2020, 3, 177-185. (IF = 15.122, JCR Q1)
[11] M. Chen#, L. Wang#, X. Sheng, T. Wang, J. Zhou, S. Li, X. Shen, M. Zhang, Q. Zhang, Xinzhi Yu, J. Zhu, B. Lu, An Ultrastable Nonaqueous Potassium-Ion Hybrid Capacitor, Advanced Functional Materials, 2020, 2004247. (IF = 16.836, , JCR Q1)
[12] H. Deng#, L. Wang#, S. Li, M. Zhang, T. Wang, J. Zhou, M. Chen, S. Chen, J. Cao, Q. Zhang, J. Zhu, B. Lu, Radial Pores in Nitrogen/Oxygen Dual-Doped Carbon Nanospheres Anode Boost High-Power and Ultrastable Potassium-Ion Batteries, Advanced Functional Materials, 2021, 2107246. (IF = 16.836, JCR Q1)
[13] X. Xu, Q. Zhang, M. Hao, Y. Hu, Z. Lin, L. Peng, T. Wang, X. Ren, C. Wang, Z. Zhao, C. Wan, H. Fei, L. Wang, J. Zhu, H. Sun, W. Chen, T. Du, B. Deng, G. J Cheng, I. Shakir, C. Dames, T. S Fisher, X. Zhang, H. Li, Y. Huang, X. Duan, Double-negative-index ceramic aerogels for thermal superinsulation, Science, 2019, 363, 723-727. (co-author)