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Vertically aligned W(Mo)S_(2)/N-W(Mo)C-based light-assisted electrocatalysis for hydrogen evolution in acidic solutions 被引量:3
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作者 Lan-Fang Wang Rui-Xia Yang +3 位作者 Jin-Zhi Fu yue-yue cao Rui-Fang Ding Xiao-Hong Xu 《Rare Metals》 SCIE EI CAS CSCD 2023年第5期1535-1544,共10页
The development of non-noble-metal hydrogen evolution electrocatalysts holds great promises for a sustainable energy system.Here,a hybrid W(Mo)S_(2)/NW(Mo)C nanosheet with array structures was reported for an efficien... The development of non-noble-metal hydrogen evolution electrocatalysts holds great promises for a sustainable energy system.Here,a hybrid W(Mo)S_(2)/NW(Mo)C nanosheet with array structures was reported for an efficient light-as sis ted hydrogen evolution electrocatalysts in acidic solutions.The resulting vertically aligned W(Mo)S_(2)/N-W(Mo)C was supported on a conductive carbon fiber paper,which can be produced through annealing W(Mo)S_(2)nanosheets by simultaneous carbonization and N-doping in Ar/H_(2)atmosphere.This optimized WS_(2)/NWC and MoS_(2)/N-MoC electrode exhibits remarkable lightassisted electrocatalysis activity with overpotentials of0.120 and 0.122 V at 10 mA·cm^(-1)in acidic solutions,respectively.Such high hydrogen evolution activities should be attributed to the electrocatalytic synergistic effects of the abundant active sites existing in different phase boundaries and the absorption for ultraviolet-visible light.This study shows that synthesis of low-cost and highly active W(Mo)S_(2)-based hydrogen evolution electrocatalyst opens up a route toward the development of scalable production of hydrogen fuels. 展开更多
关键词 W(Mo)S_(2)/N-W(Mo)C heterostructures Vertically aligned nanosheets Hydrogen evolution Lightassisted electrocatalysis
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