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Hao Fei
Hao Fei
Inne imiona/nazwiskaFei Hao, H Fei, Fei H
Zweryfikowany adres z cityu.edu.hk
Tytuł
Cytowane przez
Cytowane przez
Rok
Phase engineering of a multiphasic 1T/2H MoS 2 catalyst for highly efficient hydrogen evolution
D Wang, X Zhang, S Bao, Z Zhang, H Fei, Z Wu
Journal of Materials Chemistry A 5 (6), 2681-2688, 2017
4652017
Sulfur vacancy engineering of MoS2 via phosphorus incorporation for improved electrocatalytic N2 reduction to NH3
H Fei, T Guo, Y Xin, L Wang, R Liu, D Wang, F Liu, Z Wu
Applied Catalysis B: Environmental 300, 120733, 2022
1242022
Highly Efficient Electrocatalytic N2 Reduction to Ammonia over Metallic 1T Phase of MoS2 Enabled by Active Sites Separation Mechanism
R Liu, T Guo, H Fei, Z Wu, D Wang, F Liu
Advanced Science 9 (2), 2103583, 2022
522022
Targeted Modulation of Competitive Active Sites toward Nitrogen Fixation via Sulfur Vacancy Engineering Over MoS2
H Fei, R Liu, J Wang, T Guo, Z Wu, D Wang, F Liu
Advanced Functional Materials 33 (36), 2302501, 2023
452023
Mn-doped porous interconnected MoP nanosheets for enhanced hydrogen evolution
Z Mu, T Guo, H Fei, Y Mao, Z Wu, D Wang
Applied Surface Science 551, 149321, 2021
402021
Direct seawater electrolysis: from catalyst design to device applications
H Fei, R Liu, T Liu, M Ju, J Lei, Z Wang, S Wang, Y Zhang, W Chen, Z Wu, ...
Advanced Materials 36 (17), 2309211, 2024
342024
Multiphasic 1T@ 2H MoSe2 as a highly efficient catalyst for the N2 reduction to NH3
Z Wu, R Zhang, H Fei, R Liu, D Wang, X Liu
Applied Surface Science 532, 147372, 2020
342020
A facile preparation of WS2 nanosheets as a highly effective HER catalyst
X Zhang, H Fei, Z Wu, D Wang
Tungsten 1, 101-109, 2019
222019
Constructing molybdenum vacancy defect for MoP with optimized p-band center towards high-efficiency hydrogen evolution
T Guo, H Fei, R Liu, F Liu, D Wang, Z Wu
Applied Catalysis B: Environmental 343, 123480, 2024
192024
Insights of active sites separation mechanism for highly efficient electrocatalytic N2 reduction to ammonia over glucose-induced metallic MoS2
R Liu, H Fei, J Wang, T Guo, F Liu, J Wang, Z Wu, D Wang
Applied Catalysis B: Environmental 337, 122997, 2023
192023
Metal Oxide‐Supported Metal Catalysts for Electrocatalytic Oxygen Reduction Reaction: Characterization Methods, Modulation Strategies, and Recent Progress
S Wang, M Wang, Y Zhang, H Wang, H Fei, R Liu, H Kong, R Gao, S Zhao, ...
Small Methods 7 (7), 2201714, 2023
182023
Unveiling the synergistic effect between the metallic phase and bridging S species over MoS2 for highly efficient nitrogen fixation
R Liu, H Fei, J Wang, T Guo, F Liu, Z Wu, D Wang
Applied Catalysis B: Environmental 343, 123469, 2024
172024
Extending MoS2-based materials into the catalysis of non-acidic hydrogen evolution: challenges, progress, and perspectives
H Fei, R Liu, Y Zhang, H Wang, M Wang, S Wang, M Ni, Z Wu, J Wang
Materials Futures 2 (2), 022103, 2023
172023
Construction of FeS 2@ MoS 2 heterostructures for enhanced hydrogen evolution
D Wang, Y Song, T Guo, R Liu, Z Wu
Sustainable Energy & Fuels 6 (9), 2243-2248, 2022
122022
Unveiling the competitive behavior by the orientated regulation of S-vacancy over MoS2 for highly effective N2 fixation
H Fei, R Liu, J Wang, T Guo, F Liu, Z Wu, D Wang
Chemical Engineering Journal 476, 146895, 2023
102023
MoS2/Cu2O nanohybrid as a highly efficient catalyst for the photoelectrocatalytic hydrogen generation
Z Wu, H Fei, D Wang
Materials Letters 256, 126622, 2019
92019
Preparation and electrocatalytic hydrogen evolution performance of spherical hollow MoS2/WS2 heterostructures
D WANG, Y Liu-yi-yi, R LIU, GUO Ting, FEI Hao, Z WU
Transactions of Nonferrous Metals Society of China 33 (5), 1540-1549, 2023
72023
Mn, P co-doped sharp-edged Mo 2 C nanosheets anchored on porous carbon for efficient electrocatalytic hydrogen evolution
Z Mu, T Guo, H Fei, D Xu, Y Mao, Z Wu, D Wang
Sustainable Energy & Fuels 6 (3), 903-909, 2022
72022
Mn boosted the electrocatalytic hydrogen evolution of N, P co-doped Mo 2 C via synergistically tuning the electronic structures
Z Mu, T Guo, H Fei, D Xu, Y Mao, Z Wu, D Wang
Sustainable Energy & Fuels 6 (14), 3363-3370, 2022
42022
Enhanced prelithiation performance of Li5FeO4 cathode additive and optimized solid electrolyte interface enabled by Mn substitution
D Wang, J Wang, X Li, C Han, H Fei, Z Wu
Journal of Alloys and Compounds 992, 174607, 2024
32024
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