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典型文献
S vacant Culn5S8 confined in a few-layer MoSe2 with interlayer-expanded hollow heterostructures boost photocatalytic CO2 reduction
文献摘要:
The conversion of CO2 into CO,CH4 and other hydrocarbons through solar energy can alleviate the energy shortage problem.We design a novel photocatalyst with S defects CuIn5S8@MoSe2 hollow structure.The interlayer-expanded MoSe2 can increase the adsorption of interme-diates.The unique hollow structure can improve the light utilization efficiency and the electron-holes separation.CuIn5S8 with S vacancies in bimetallic sites has high selectivity and photocatalytic reduction of CO2 activity.Therefore,S vacant CuIn5S8 confined in a few-layers MoSe2 with interlayer-expanded hollow heterostructures exhibit super performance for photocatalytic CO2 reduc-tion.After 8-h light reaction,the outputs of CO and CH4 for the 15.3 wt% CuIn5S8@MoSe2 sample containing S vacancies (Vs) are 30.4 and 14.7 μmol·g-1,respectively.The mechanism is also investigated in detail through in situ Fourier transform infrared spectroscopy technology.
文献关键词:
作者姓名:
Li-Juan Chen;Ting-Ting Liu;Shu-Ming Liu;Sheng Cai;Xiao-Xiao Zou;Jing-Wen Jiang;Zhi-Yuan Mei;Gen-Fu Zhao;Xiao-Fei Yang;Hong Guo
作者机构:
School of Materials and Energy,Yunnan University,Kunming 650091,China;Nanomaterials and Energy Lab,Department of Mechanical and Materials Engineering,Western University,London,ON N6A 5B9,Canada
引用格式:
[1]Li-Juan Chen;Ting-Ting Liu;Shu-Ming Liu;Sheng Cai;Xiao-Xiao Zou;Jing-Wen Jiang;Zhi-Yuan Mei;Gen-Fu Zhao;Xiao-Fei Yang;Hong Guo-.S vacant Culn5S8 confined in a few-layer MoSe2 with interlayer-expanded hollow heterostructures boost photocatalytic CO2 reduction)[J].稀有金属(英文版),2022(01):144-154
A类:
Culn5S8,CuIn5S8
B类:
vacant,confined,few,MoSe2,interlayer,expanded,hollow,heterostructures,boost,photocatalytic,reduction,conversion,into,CH4,other,hydrocarbons,through,solar,energy,alleviate,shortage,problem,We,design,novel,photocatalyst,defects,increase,adsorption,interme,diates,unique,improve,light,utilization,efficiency,electron,holes,separation,vacancies,bimetallic,sites,has,high,selectivity,activity,Therefore,layers,exhibit,super,performance,After,reaction,outputs,wt,sample,containing,Vs,respectively,mechanism,also,investigated,detail,situ,Fourier,transform,infrared,spectroscopy,technology
AB值:
0.52341
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