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Ultrathin nanoporous metalsemiconductor heterojunction photoanodes for visible light hydrogen evolution
Zhang, W.; Y. Zhao; K. He; J. Luo; G. Li; R. Liu; S. Liu; Z. Cao; P. Jing and Y. Ding
2017
摘要Plasmonic metalsemiconductor nano-heterojunctions (NHJs), with their superior photocatalytic performance, provide opportunities for the efficient utilization of solar energy. However, scientific significance and technical challenges remain in the development of suitable metalsemiconductor NHJ photoelectrodes for new generation flexible optoelectronic devices, which often require complex processing. Herein, we report integrated three-dimensional (3D) NHJ photoelectrodes by conformally coating cadmium sulfide (CdS) nanolayers onto ultrathin nanoporous gold (NPG) films via a facile electrodeposition method. Localized surface plasmon resonance (LSPR) of NPG enhances the electronhole pair generation and separation. Moreover, the direct contact interface and high conductive framework structure of the NHJs boosts the photogenerated carrier separation and transport. Hence, the NHJs exhibit evidently enhanced photocurrent density and hydrogen evolution rate relative to CdS deposited on either gold (Au) foil or fluorine-doped tin oxide (FTO) at 0 V vs. SCE (saturated calomel electrode) under visible-light irradiation. Moreover, they demonstrate a surprisingly stable photoelectrochemical hydrogen evolution (PEC-HE) activity over 104 s of continuous irradiation.[Figure not available: see fulltext.] 2017 Tsinghua University Press and Springer-Verlag GmbH Germany
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语种英语
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/59454
专题中科院长春光机所知识产出
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Zhang, W.,Y. Zhao,K. He,et al. Ultrathin nanoporous metalsemiconductor heterojunction photoanodes for visible light hydrogen evolution[J],2017.
APA Zhang, W..,Y. Zhao.,K. He.,J. Luo.,G. Li.,...&P. Jing and Y. Ding.(2017).Ultrathin nanoporous metalsemiconductor heterojunction photoanodes for visible light hydrogen evolution..
MLA Zhang, W.,et al."Ultrathin nanoporous metalsemiconductor heterojunction photoanodes for visible light hydrogen evolution".(2017).
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