Applied Catalysis2022,Vol.3039.DOI:10.1016/j.apcatb.2021.120893

Coupling Ni-substituted polyoxometalate catalysts with water-soluble CdSe quantum dots for ultraefficient photogeneration of hydrogen under visible light

Zhang, Mo Xin, Xing Feng, Yeqin Zhang, Junhao Lv, Hongjin Yang, Guo-Yu
Applied Catalysis2022,Vol.3039.DOI:10.1016/j.apcatb.2021.120893

Coupling Ni-substituted polyoxometalate catalysts with water-soluble CdSe quantum dots for ultraefficient photogeneration of hydrogen under visible light

Zhang, Mo 1Xin, Xing 1Feng, Yeqin 1Zhang, Junhao 1Lv, Hongjin 1Yang, Guo-Yu1
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作者信息

  • 1. Beijing Inst Technol
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Abstract

The development of robust and efficient hydrogen-evolving system remains a substantial but promising challenge to convert solar energy into clean fuel. Herein, we report the construction of water-compatible, robust, and ultraefficient hydrogen-evolving system by coupling water-soluble CdSe light-absorbers with Ni-substituted polyoxometalate (Ni-POM) catalysts and AA electron donor. Such facile catalytic system exhibits superior and robust hydrogen production activity to date even among known semiconductor/POM hybrids-based hydrogen production systems. Multiple stability experiments confirm the molecular stability of Ni-POM catalysts under turnover conditions. Various experimental and spectroscopic analyses reveal that the synergistic cooperation between high photostability of CdSe light-absorber, outstanding reversible multi-electron-transferring property of Ni-POM catalyst, and the fast hole-removing ability of AA electron donor account for the exceptional performance of present catalytic system. Our present work provides new research insights into the continued development of effective hydrogen-evolving systems through coupling other QDs-based light-absorbers and earth-abundant transition-metal-substituted POM catalysts.

Key words

Polyoxometalates/Ni-substitution/Water-soluble CdSe quantum dots/Photocatalytic hydrogen production/EFFICIENT H-2 GENERATION/METAL-ORGANIC FRAMEWORKS/PHOTO-REDUCTION/EVOLUTION/PHOTOSENSITIZERS/ENHANCEMENT/CLUSTERS/PLANET

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出版年

2022
Applied Catalysis

Applied Catalysis

ISSN:0926-3373
被引量21
参考文献量65
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