人物經歷
1988年出生於河北唐山,2011年於中國石油大學(北京)獲得工學學士學位,2018博士畢業於中國科學院大連化學物理研究所,2018-2021在美國馬里蘭大學從事博士後研究,2022-2023在中國科學院大連化學物理研究所歷任副研究員/研究員,2023年5月加入中國科學技術大學蘇州高等研究院/化學與材料科學學院。
研究方向
主要研究內容包括仿生超流動、二次電池、電解水關鍵材料與技術,研究涉及電化學/工程、物理化學、納米技術等多個化工/化學分支學科的交叉結合。相關研究工作相繼發表在Nature Nanotech.(1篇)、Angew. Chem. Int. (3篇)、JACS(1篇)、Chem(1篇)、Nature Com.(1篇)、Nano Energy(1篇)等國際重要刊物上20餘篇。申請中國專利16項,授權5項。
學術論文
(1) Li, D.; Yu, Y.; Zhao, W.; Wang, F.; Su, Y.; Cao, L. Rechargeable Zinc-Water Battery for Sustainable Hydrogen Generation. Nano Energy 2024, 109806.
(2) Wang, M.; Cao, L.; Liu, Z.; Yang, W.; Sun, S.; Hou, M.; Shao, Z. Sulfur dioxide-resistant platinum-based intermetallic nanocatalysts encaged by porous nitrogen-doped carbon for oxygen reduction reaction. Chemical Engineering Journal 2024, 152162.
(3) Ma, L.; Pollard, T. P.; Schroeder, M. A.; Luo, C.; Zhang, Y.; Pastel, G.; Cao, L.; Zhang, J.; Shipitsyn, V.; Yao, Y. Engineering a zinc anode interphasial chemistry for acidic, alkaline and non-aqueous electrolytes. Energy & Environmental Science 2024, 17 (7), 2468-2479.
(4) Liu, Z.; Cao, L.; Wang, M.; Zhao, Y.; Hou, M.; Shao, Z. A robust Ni single-atom catalyst for industrial current and exceptional selectivity in electrochemical CO 2 reduction to CO. Journal of Materials Chemistry A 2024, 12 (14), 8331-8339.
(5) Huang, H.; Chen, T.; Fang, D.; Cao, L.; Wang, G.; Hao, J.; Shao, Z. Modulation in the electronic structure of Ir-rich shell on AuIr solid solution as OER electrocatalyst for PEM electrolyzer. Journal of Applied Electrochemistry 2024, 1-11.
(6) Huang, H.; Cao, L.; Fang, D.; Yu, H.; Shao, Z. Stable hydrogen evolution catalysis: Nitrogen-carbon-stabilized platinum on a microporous carbon-based framework. Journal of Electroanalytical Chemistry 2024, 952, 117985.
(7) Guo, Q.; Yuan, R.; Zhao, Y.; Yu, Y.; Fu, J.; Cao, L. Performance of Nitrogen‐Doped Carbon Nanoparticles Carrying FeNiCu as Bifunctional Electrocatalyst for Rechargeable Zinc‐Air Battery. Small 2024, 2400830.
(8) Zhu, J.; Li, P.; Wang, G.; Cao, L.; Liu, S. Design strategy for high-performance bifunctional electrode materials with heterogeneous structures formed by hydrothermal sulfur etching. Journal of Colloid and Interface Science 2023, 633, 608-618.
(9) Zhao, Z.; Tang, S.; Liu, Z.; Cao, L.; Cheng, M.; Shao, Z. Efficient and stable heterostructured air electrode for solid oxide steam electrolysis.International Journal of Hydrogen Energy 2023, 48 (15), 5764-5773.
(10) Luo, W.; Cao, L.; Hou, M.; Zhou, Y.; Ren, Z.; Geng, J.; Shao, Z. MOF-Based Co and Mn Embedded in Nitrogen-Doped Microporous Carbon as an Efficient Catalyst for Oxygen Reduction Reaction in Anion Exchange Membrane Fuel Cell. International Journal of Energy Research 2023, 2023.
(11) Luo, W.; Cao, L.; Hou, M.; Ren, Z.; Xie, F.; Shao, Z. N-doped porous carbon encapsulated Fe and Ni bimetal derived from MOFs as efficient oxygen reduction reaction catalysts for anion exchange membrane fuel cell. Journal of Electroanalytical Chemistry 2023, 944, 117652.
(12) Cao, L.; Li, D. Zinc electrodes: Overview. 2023.
(13) Baker, J.; Cao, L.; Hwang, Y.; Wang, C.; Radermacher, R. Performance investigation of an electrochemical ammonia compressor stack.International Journal of Refrigeration 2023, 153, 67-77.
(14) Ma, L.; Pollard, T. P.; Zhang, Y.; Schroeder, M. A.; Ren, X.; Han, K. S.; Ding, M. S.; Cresce, A. V.; Atwater, T. B.; Mars, J. Cao, L.; … Xu, K. Ammonium enables reversible aqueous Zn battery chemistries by tailoring the interphase. One Earth 2022, 5 (4), 413-421.
(15) Deng, T.; Ji, X.; Zou, L.; Chiekezi, O.; Cao, L.; Fan, X.; Adebisi, T. R.; Chang, H.-J.; Wang, H.; Li, B.… Wang, C.; Lu, X. Interfacial-engineering-enabled practical low-temperature sodium metal battery. Nature Nanotechnology 2022, 17 (3), 269-277.
(16) Bai, P.; Ji, X.; Zhang, J.; Zhang, W.; Hou, S.; Su, H.; Li, M.; Deng, T.; Cao, L.; Liu, S. …Xu, Y.; Wang, C. Formation of LiF‐rich cathode‐electrolyte interphase by electrolyte reduction. Angewandte Chemie International Edition 2022, 61 (26), e202202731.
(17) Wang, C.; Hwang, Y.; Cao, L.; Baker, J. Electrochemical Ammonia Compression. In Electrochemical Society Meeting Abstracts 240, 2021; The Electrochemical Society, Inc.: pp 751-751.
(18) Li, D.; Cao, L.; Deng, T.; Liu, S.; Wang, C. Design of a solid electrolyte interphase for aqueous Zn batteries. Angewandte Chemie International Edition 2021, 60 (23), 13035-13041.
(19) Jin, T.; Ji, X.; Wang, P. F.; Zhu, K.; Zhang, J.; Cao, L.; Chen, L.; Cui, C.; Deng, T.; Liu, S. …Jiao, L.; Wang, C. High‐energy aqueous sodium‐ion batteries. Angewandte Chemie International Edition 2021, 133 (21), 12050-12055.
(20) Deng, T.; Cao, L.; He, X.; Li, A.-M.; Li, D.; Xu, J.; Liu, S.; Bai, P.; Jin, T.; Ma, L. …Wang, C. In situ formation of polymer-inorganic solid-electrolyte interphase for stable polymeric solid-state lithium-metal batteries. Chem 2021, 7 (11), 3052-3068.
(21) Cao, L.; Li, D.; Soto, F. A.; Ponce, V.; Zhang, B.; Ma, L.; Deng, T.; Seminario, J. M.; Hu, E.; Yang, X. Q.; …Balbuena, P.; Wang, C. Highly reversible aqueous zinc batteries enabled by Zincophilic–Zincophobic interfacial layers and interrupted hydrogen‐bond electrolytes. Angewandte Chemie International Edition 2021, 60 (34), 18845-18851.
(22) Cao, L.; Li, D.; Pollard, T.; Deng, T.; Zhang, B.; Yang, C.; Chen, L.; Vatamanu, J.; Hu, E.; Hourwitz, M. J. …Xu, K.; Borodin, O.; Wang, C. Fluorinated interphase enables reversible aqueous zinc battery chemistries. Nature nanotechnology 2021, 16 (8), 902-910.
(23) Sun, R.; Ji, X.; Luo, C.; Hou, S.; Hu, P.; Pu, X.; Cao, L.; Mai, L.; Wang, C. Water‐Pillared Sodium Vanadium Bronze Nanowires for Enhanced Rechargeable Magnesium Ion Storage. Small 2020, 16 (30), 2000741.
(24) Ma, L.; Schroeder, M. A.; Pollard, T. P.; Borodin, O.; Ding, M. S.; Sun, R.; Cao, L.; Ho, J.; Baker, D. R.; Wang, C. Critical factors dictating reversibility of the zinc metal anode. Energy & Environmental Materials 2020, 3 (4), 516-521.
(25) Deng, T.; Ji, X.; Zhao, Y.; Cao, L.; Li, S.; Hwang, S.; Luo, C.; Wang, P.; Jia, H.; Fan, X. …Wang, C.; Zhang, J. Tuning the anode–electrolyte interface chemistry for garnet‐based solid‐state Li metal batteries. Advanced Materials 2020, 32 (23), 2000030.
(26) Chen, L.; Cao, L.; Ji, X.; Hou, S.; Li, Q.; Chen, J.; Yang, C.; Eidson, N.; Wang, C. Enabling safe aqueous lithium ion open batteries by suppressing oxygen reduction reaction. Nature Communications 2020, 11 (1), 2638.