师资队伍

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刘碧录

发布时间:2024-09-24

Published more than 200 papers in prestigious journals with total citations >27000 and H-index of 76.

 

10 selected publications.

 

(1). Huang, Z.; Zhang, Z.; Zhang, R.; Ding, B.; Yang, L.; Wu, K.; Xu, Y.; Zhong, G.; Ren, C.; Liu, J.; Hao, Y.; Wu, M.; Ma, T.; Liu, B., An inorganic liquid crystalline dispersion with 2D ferroelectric moieties. National Science Review 2024, 11 (5), nwae108.

 

(2). Kang, X.; Yang, F.; Zhang, Z.; Liu, H.; Ge, S.; Hu, S.; Li, S.; Luo, Y.; Yu, Q.; Liu, Z.; Wang, Q.; Ren, W.; Sun, C.; Cheng, H. M.; Liu, B., A corrosion-resistant RuMoNi catalyst for efficient and long-lasting seawater oxidation and anion exchange membrane electrolyzer. Nature Communications, 2023, 14 (1), 3607.

 

(3). Wu, Q. K.; Nong, H. Y.; Zheng, R. X.; Zhang, R. J.; Wang, J. W.; Yang, L. S.; Liu, B. L., Resolidified Chalcogen Precursors for High-Quality 2D Semiconductor Growth (Inside Cover). Angew Chem Int Ed 2023, 62, e202301501.

 

(4)Xu, H.; Ding, B.*; Xu, Y. A.; Huang, Z. Y.; Wei, D. H.; Chen, S. H.; Lan, T. S.; Pan, Y. K.; Cheng, H. M.*; Liu, B. L.*, Magnetically tunable and stable deep-ultraviolet birefringent optics using 2D h-BN material. Nature Nanotechnology, 2022, 17, 1091.

 

Research Highlight 1#: Young Hee Lee (Sungkyunkwan University, Korea), 2D material inorganic liquid crystals for tunable deep UV light modulation. National Science Review, 2022, 9, nwac252.

 

Research Highlight 2#: Alberto Moscatelli (Chief Editor of Nature Nanotechnology), A 2D material-based liquid crystal for deep-ultraviolet light modulation (Research Briefing). Nature Nanotechnology, 2022, 17, 1050-1051.

 

 (5) Liu, H. M.+; Xie, R. K.+; Luo, Y. T.; Cui, Z.C.; Yu, Q. M.; Gao, Z.; Zhang, Z.; Yang, F.; Kang, X.; Ge, S. Y.; Li, S. H.; Gao, X. F.; Chai, G. L.; Liu, L.; Liu, B. L.*, Dual interfacial engineering towards superior and stable hydrogen evolution at 2500 mA cm-2, Nature Communications, 2022, 13, 6382.

 

(6)Yu, Q. M.; Zhang, Z. Y.; Qiu, S. Y.; Luo, Y. T.; Liu, Z. B.; Yang, F. N.; Liu, H. M.; Ge, S. Y.; Zou, X. L.; Ding, B. F.; Ren, W. C.; Cheng, H. M.; Sun, C. H.*; Liu, B. L.*, A Ta-TaS2 monolith catalyst with robust and metallic interface for superior hydrogen evolution. Nature Communications, 2021, 12, 6051.

 

(7) Cai, Z. Y.+; Lai, Y. J.+; Zhao, S. L.; Zhang, R. J.; Tan, J. Y.; Feng, S. M.; Zou, J. Y.; Tang, L.; Lin, J. H.; Liu, B. L.*; Cheng, H. M.*, Dissolution-Precipitation Growth of Uniform and Clean Two-Dimensional Transition Metal Dichalcogenides. National Science Review, 2021, 8, nwaa115.

Reported by EurekAlert! (AAAS), etc.

 

(8) Zhang, C.+; Tan, J. Y.+; Pan, Y. K.; Cai, X. K.; Zou, X. L.; Cheng, H. M.*; Liu, B. L.*, Mass Production of Two-Dimensional Materials by Intermediate-Assisted Grinding Exfoliation. National Science Review, 2020, 7, 324-332.

 

Research Highlight 1#: Kostya Novoselov (2010 Nobel Prize Laureate in Physics), Grinding exfoliation for scalable production of 2D materials, National Science Review, 2020, 7, 559-560.

Reported by the EurekAlert! (AAAS), Nanowerk, Physorg, Tsinghua News, etc.

 

(9) Zhang, C.+; Luo, Y. T.+; Tan, J. Y.; Yu, Q. M.; Yang, F. N.; Zhang, Z. Y.; Yang, L. S.; Cheng, H. M.; Liu, B. L.*, High-Throughput Production of Cheap Mineral-Based Two-Dimensional Electrocatalysts for High-Current-Density Hydrogen Evolution. Nature Communications, 2020, 11, 3724.

 

(10) Luo, Y. T.; Tang, L.; Khan, U.; Yu, Q. M.; Cheng, H. M.; Zou, X. L.*; Liu, B. L.*, Morphology and Surface Chemistry Engineering for pH-Universal Catalysts toward Hydrogen Evolution at Large Current Density, Nature Communications (Editor’s Choice), 2019, 10, 269.

 

Research Highlight 1#: Science Foundation in China, 2019, 27, 1.

Reported by NSFC website, Tsinghua news, etc.


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