Efficient photocatalytic biomass-alcohol conversion with simultaneous hydrogen evolution over ultrathin 2D NiS/Ni-CdS photocatalyst

被引:0
|
作者
Zongyi Huang [1 ]
Cheng Guo [2 ]
Quanxing Zheng [3 ]
Hongliang Lu [3 ]
Pengfei Ma [3 ]
Zhengzhong Fang [3 ]
Pengfei Sun [1 ]
Xiaodong Yi [1 ]
Zhou Chen [2 ]
机构
[1] State Key Laboratory of Physical Chemistry of Solid Surfaces,College of Chemistry and Chemical Engineering,Xiamen University
[2] College of Materials,Key Laboratory of High Performance Ceramic Fibers(Xiamen University),Ministry of Education,Xiamen University
[3] Technology Center,China Tobacco Fujian Industrial
关键词
D O I
暂无
中图分类号
O643.36 [催化剂]; O644.1 [光化学]; TK6 [生物能及其利用];
学科分类号
080703 ;
摘要
The photocatalytic conversion of biomass into high-value chemicals, coupled with simultaneous hydrogen(H2) evolution, leveraging the electrons and holes generated by solar energy, holds great promise for addressing energy demands. In this study, we constructed a dual functional photocatalytic system formed by NiS loaded on Ni doped two-dimensional(2D) CdS nanosheet(NiS/Ni-CdSNS) heterostructure for visible-light-driven H2 evolution and ethanol oxidation to acetaldehyde. Remarkably, the 2D NiS/NiCdSNS exhibited significant activity and selectivity in both photocatalytic H2 evolution and ethanol oxidation, achieving yields of 7.98 mmol g-1h-1 for H2 and 7.33 mmol g-1h-1 for acetaldehyde. The heterogeneous interface of the composite facilitated efficient charge separation, while NiS provided abundant sites for proton reduction, thereby promoting the overall dual-functional photocatalytic activity. Density functional theory calculations further reveal that both Ni doping and NiS loading can reduce the reaction energy barrier of ethanol oxidation of free radicals, and NiS/Ni-CdSNS composite materials exhibit stronger ethanol C-H activation ability to generate key intermediate ·CH(OH)CH3 on the surface. This work serves as a valuable guide for the rational design of efficient dual functional photocatalytic systems that combine H2 evolution with the selective conversion of organic compounds into high-value chemicals.
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页码:448 / 453
页数:6
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