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时间:2024-03-06  信息来源:   作者:何冰  点击率:

导师介绍---何冰

  何冰,博士,2023毕业于中国地质大学(武汉),省部共建纺织新材料与先进加工技术国家重点实验室专任教师,中国地质大学(武汉)硕博连读,新加坡南洋理工大学联合培养。近年来。围绕光催化剂电荷高效分离和传输发表SCI 论文20余篇,其中以第一/通讯作者在Adv. Mater.eScienceCarbon Energy Chem. Commun等国际重要期刊上发表论文10篇,包括ESI高被引论文1篇,封面论文1篇。

Email:bhe@wtu.edu.cn

研究领域:

1. 半导体、COF光催化剂的结构设计及其光生电荷分离、传输行为研究

2. 光(电)催化领域(分解水制氢、CO2还原)

3.热辅助光催化

基金项目:

1. 中国地质大学(武汉)教学实验室开放基金,2019-2020,主持

2. 中国地质大学(武汉)优秀博士创新基金,2020-2022年,主持

代表性论文:

[1] B. He, S.R. Jia, M.Y. Zhao, Y. Wang, T. Chen, S.Q. Zhao, Z. Li, Z.Q. Lin*, Y.L. Zhao* and X.Q. Liu*. General and robust photothermal heating-enabled high-efficiency photoelectrochemical water splitting. Advanced Materials, 2021, 200440. (ESI高被引论文, IF: 32.086)

[2] B. He, Y. Cao, K.J. Lin, M.J. Wu, Y.H. Zhu, X. Cui, L. Hu, Y.K. Yang and X.Q. Liu*. Enhanced bulk and interfacial charge transfer in Fe:VOPO4 modified Mo:BiVO4 photoanodes for photoelectrochemical water splitting. eScience, 2024, 100242.

[3] B. He, Y. Wang, X.Q. Liu*, Y.C. Li, X.Q. Hu, J. Huang, Y. Yu, Z. Shu, Z. Li*, and Y.L. Zhao*. Spatial engineering of a Co(OH)x encapsulated p-Cu2S/n-BiVO4 photoanode: simultaneously promoting charge separation and surface reaction kinetics in solar water splitting. J. Mater. Chem. A, 2019, 7(12), 6747-6752. (IF:14.511)

[4] B. He, F.F. Zhao, P. Yi, J. Huang, Y. Wang, S.Q. Zhao*, Z. Li, Y.L. Zhao* and X.Q. Liu*. Spinel-oxide integrated BiVO4 photoanodes with photothermal effect for efficient solar water oxidation. ACS Appl. Mater. Interface, 2021, 13(41), 48901-48912. (IF:10.383)

[5] B. He, H.X. Sheng, Q. Liu, Z.F. Hu, J.N. Wang, X.Q. Hu*, Y. Wang*, Z. Li, and X.Q. Liu*, Synergistically promoted charge separation/transfer in ZnO nanosheet photoanode via the incorporation of multifunctional 3DrGO, Chem. Commun., 2022, 58, 8622-8625. (热点论文, IF:6.065)

[6] B. He, Y. Wang*, Q.L. Zhai, P. Qiu, G. Dong, X.Q. Liu, Y.H. Chen* and Z. Li*. From polymeric carbon nitride to carbon materials: extended application to electrochemical energy conversion and storage. Nanoscale, 2020, 12, 8636-8646. (IF:8.307)

[7] Y.C. Li+, B. He+, X.Q. Liu*, X.Q. Hu, J. Huang, S.Q. Ye, Z. Shu, Y. Wang*, Z. Li*. Graphene confined MoS2 particles for accelerated electrocatalytic hydrogen evolution. Int. J. Hydrogen Energy, 2019, 44(16), 8070-8078. (IF:7.139,共同一作)

[8] X.Q. Hu, J. Huang, Y. Cao, B. He*, X. Cui, Y.H. Zhu, Y. Wang, Y.H. Chen*, Y.K. Yang, Z. Li, X.Q. Liu*, Photothermal-boosted polaron transport in Fe2O3 photoanodes for efficient photoelectrochemical water splitting. Carbon Energy, 2023, 5, e369 (IF:21.556)

[9] X.R. Yu, P. Qiu, Y.C. Wang, B. He*, X.R. Xu, H.L. Zhu, J. DingX.Q. Liu, Z. Li, Yang Wang*, Defect-induced charge redistribution of MoO3-x nanometric wires for photocatalytic ammonia synthesis. J. Colloid Interface Sci., 2023, 640,775-782. (IF: 9.965)

[10] F.F. Zhao, H.X. Sheng, Q.P. Sun, J.N. Wang, Q. Liu, Z.F. Hu, B. He*, Y. Wang, Z. Li, X.Q. Liu*, Harvesting the infrared part of solar light to promote charge transfer in Bi2S3/WO3 photoanode for enhanced photoelectrochemical water splitting, J. Colloid Interface Sci., 2022, 621, 267-274. (IF: 9.965)

[11] B. He, Y. Cao, K.J. Lin, Y. Wang, Z. Li, Y.K. Yang, Y.L. Zhao* and X.Q. Liu*, Strong interactions between electron-rich Au and BiVO4 photoanode for boosting hole extraction. (Under review)



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