Zobrazeno 1 - 10
of 79
pro vyhledávání: '"Chaojun, Lei"'
Autor:
Kangkai Fu, Douke Yuan, Ting Yu, Chaojun Lei, Zhenhui Kou, Bingfeng Huang, Siliu Lyu, Feng Zhang, Tongtao Wan
Publikováno v:
Molecules, Vol 29, Iss 18, p 4304 (2024)
Water electrolysis has been recognized as a promising technology that can convert renewable energy into hydrogen for storage and utilization. The superior activity and low cost of catalysis are key factors in promoting the industrialization of water
Externí odkaz:
https://doaj.org/article/3cf5066c47e448e2846690736e6567e9
Autor:
Jiaxin Yuan, Xiaodi Cheng, Chaojun Lei, Bin Yang, Zhongjian Li, Kun Luo, K.H. Koko Lam, Lecheng Lei, Yang Hou, Kostya Ken Ostrikov
Publikováno v:
Engineering, Vol 7, Iss 9, Pp 1306-1312 (2021)
Developing high-performing oxygen evolution reaction (OER) electrocatalysts under high-current operation conditions is critical for future commercial applications of alkaline water electrolysis for clean energy generation. Herein, we prepared a three
Externí odkaz:
https://doaj.org/article/e8fe0cde96e54db086ff9ef3b40ced1b
Autor:
Jiaxin Yuan, Xiaodi Cheng, Hanqing Wang, Chaojun Lei, Sameer Pardiwala, Bin Yang, Zhongjian Li, Qinghua Zhang, Lecheng Lei, Shaobin Wang, Yang Hou
Publikováno v:
Nano-Micro Letters, Vol 12, Iss 1, Pp 1-12 (2020)
Abstract Cost-effective and stable electrocatalysts with ultra-high current densities for electrochemical oxygen evolution reaction (OER) are critical to the energy crisis and environmental pollution. Herein, we report a superaerophobic three dimensi
Externí odkaz:
https://doaj.org/article/7932fb2688c54e56838ca5fe86fc9753
Autor:
Junhui Cao, Kexin Wang, Jiayi Chen, Chaojun Lei, Bin Yang, Zhongjian Li, Lecheng Lei, Yang Hou, Kostya Ostrikov
Publikováno v:
Nano-Micro Letters, Vol 11, Iss 1, Pp 1-11 (2019)
Abstract Demand of highly efficient earth-abundant transition metal-based electrocatalysts to replace noble metal materials for boosting oxygen evolution reaction (OER) is rapidly growing. Herein, an electrochemically exfoliated graphite (EG) foil su
Externí odkaz:
https://doaj.org/article/fb129ac96bc8436b90b826bb11ab90a3
Publikováno v:
Inorganic Chemistry Frontiers. 10:2903-2910
Applying Natural Language Processing (NLP) to journals about catalytic reaction, we found a gap between photocatalysts and thermal catalysts, where Tera-Hertz (THz) catalysis is located; therefore, we have investigated THz catalysis in this work.
Publikováno v:
Electronics Letters (Wiley-Blackwell); Jan2024, Vol. 60 Issue 1, p1-4, 4p
Autor:
Xiaodi Cheng, Kostya Ostrikov, Zhongjian Li, Kun Luo, K.H. Koko Lam, Bin Yang, Chaojun Lei, Jiaxin Yuan, Lecheng Lei, Yang Hou
Publikováno v:
Engineering, Vol 7, Iss 9, Pp 1306-1312 (2021)
Developing high-performing oxygen evolution reaction (OER) electrocatalysts under high-current operation conditions is critical for future commercial applications of alkaline water electrolysis for clean energy generation. Herein, we prepared a three
Autor:
Xingwang Zhang, Chaojun Lei, Zhongjian Li, Jiaxin Yuan, Lecheng Lei, Chris Yuan, Yang Hou, Xiaodi Cheng, Bin Yang, Junhui Cao
Publikováno v:
Journal of Colloid and Interface Science. 579:340-346
Development of Fe-Ni-based electrocatalysts with high efficiency and stability remains a foremost challenge in the research for oxygen evolution reaction (OER) under high-current–density. Herein, a fast reduction strategy is developed for synthesis
Autor:
Zhongjian Li, Shaobin Wang, Xiaodi Cheng, Qinghua Zhang, Yang Hou, Jiaxin Yuan, Chaojun Lei, Bin Yang, Lecheng Lei, Hanqing Wang, Sameer Pardiwala
Publikováno v:
Nano-Micro Letters, Vol 12, Iss 1, Pp 1-12 (2020)
Nano-Micro Letters
Nano-Micro Letters
Highlights A superaerophobic heterostructured nanowrinkles of bimetallic selenides is developed.The 3D heterostructure exhibits excellent activity and stability towards oxygen evolution reaction (OER) in base. Electronic supplementary material The on
Autor:
Jian Chen, Yuanyuan Fu, Tingting Wang, Lecheng Lei, Wanzhen Zheng, Zhongjian Li, Chris Yuan, Yang Hou, Bin Yang, Chaojun Lei
Publikováno v:
ACS Applied Materials & Interfaces. 12:16178-16185
Developing low-cost and effective electrocatalysts for electrochemical reduction of CO2 (CO2ER) is critical to CO2 conversion and utilization. Herein, we report a novel two-dimensional (2D) confine...