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Efficient photocatalytic hydrogen evolution on single-crystalline metal selenide particles with suitable cocatalysts

It is important to improve the apparent quantum yields (AQYs) of narrow bandgap photocatalysts to achieve efficient H(2) production. The present work demonstrates a particulate solid solution of zinc selenide and copper gallium selenide (denoted as ZnSe:CGSe) that evolves H(2) efficiently and is res...

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Autores principales: Chen, Shanshan, Vequizo, Junie Jhon M., Hisatomi, Takashi, Nakabayashi, Mamiko, Lin, Lihua, Wang, Zheng, Yamakata, Akira, Shibata, Naoya, Takata, Tsuyoshi, Yamada, Taro, Domen, Kazunari
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8159321/
https://www.ncbi.nlm.nih.gov/pubmed/34094108
http://dx.doi.org/10.1039/d0sc01167c
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author Chen, Shanshan
Vequizo, Junie Jhon M.
Hisatomi, Takashi
Nakabayashi, Mamiko
Lin, Lihua
Wang, Zheng
Yamakata, Akira
Shibata, Naoya
Takata, Tsuyoshi
Yamada, Taro
Domen, Kazunari
author_facet Chen, Shanshan
Vequizo, Junie Jhon M.
Hisatomi, Takashi
Nakabayashi, Mamiko
Lin, Lihua
Wang, Zheng
Yamakata, Akira
Shibata, Naoya
Takata, Tsuyoshi
Yamada, Taro
Domen, Kazunari
author_sort Chen, Shanshan
collection PubMed
description It is important to improve the apparent quantum yields (AQYs) of narrow bandgap photocatalysts to achieve efficient H(2) production. The present work demonstrates a particulate solid solution of zinc selenide and copper gallium selenide (denoted as ZnSe:CGSe) that evolves H(2) efficiently and is responsive to visible light up to 725 nm. This material was synthesized using a flux-assisted method and was found to comprise single-crystalline tetrahedral particles. The coloading of Ni and Rh, Pt, Pd or Ru as cocatalysts further improved the photocatalytic H(2) evolution rate over this photocatalyst. With the optimal coloading of a Ni–Ru composite cocatalyst, an AQY of 13.7% was obtained at 420 nm during a sacrificial H(2) evolution reaction, representing the highest value yet reported for a photocatalyst with an absorption edge longer than 700 nm. The present study demonstrates that the preparation of single-crystalline particles and the rational assembly of composite cocatalysts are effective strategies that allow the efficient utilization of long wavelengths by metal selenide photocatalysts for solar fuel production.
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spelling pubmed-81593212021-06-04 Efficient photocatalytic hydrogen evolution on single-crystalline metal selenide particles with suitable cocatalysts Chen, Shanshan Vequizo, Junie Jhon M. Hisatomi, Takashi Nakabayashi, Mamiko Lin, Lihua Wang, Zheng Yamakata, Akira Shibata, Naoya Takata, Tsuyoshi Yamada, Taro Domen, Kazunari Chem Sci Chemistry It is important to improve the apparent quantum yields (AQYs) of narrow bandgap photocatalysts to achieve efficient H(2) production. The present work demonstrates a particulate solid solution of zinc selenide and copper gallium selenide (denoted as ZnSe:CGSe) that evolves H(2) efficiently and is responsive to visible light up to 725 nm. This material was synthesized using a flux-assisted method and was found to comprise single-crystalline tetrahedral particles. The coloading of Ni and Rh, Pt, Pd or Ru as cocatalysts further improved the photocatalytic H(2) evolution rate over this photocatalyst. With the optimal coloading of a Ni–Ru composite cocatalyst, an AQY of 13.7% was obtained at 420 nm during a sacrificial H(2) evolution reaction, representing the highest value yet reported for a photocatalyst with an absorption edge longer than 700 nm. The present study demonstrates that the preparation of single-crystalline particles and the rational assembly of composite cocatalysts are effective strategies that allow the efficient utilization of long wavelengths by metal selenide photocatalysts for solar fuel production. The Royal Society of Chemistry 2020-04-01 /pmc/articles/PMC8159321/ /pubmed/34094108 http://dx.doi.org/10.1039/d0sc01167c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Chen, Shanshan
Vequizo, Junie Jhon M.
Hisatomi, Takashi
Nakabayashi, Mamiko
Lin, Lihua
Wang, Zheng
Yamakata, Akira
Shibata, Naoya
Takata, Tsuyoshi
Yamada, Taro
Domen, Kazunari
Efficient photocatalytic hydrogen evolution on single-crystalline metal selenide particles with suitable cocatalysts
title Efficient photocatalytic hydrogen evolution on single-crystalline metal selenide particles with suitable cocatalysts
title_full Efficient photocatalytic hydrogen evolution on single-crystalline metal selenide particles with suitable cocatalysts
title_fullStr Efficient photocatalytic hydrogen evolution on single-crystalline metal selenide particles with suitable cocatalysts
title_full_unstemmed Efficient photocatalytic hydrogen evolution on single-crystalline metal selenide particles with suitable cocatalysts
title_short Efficient photocatalytic hydrogen evolution on single-crystalline metal selenide particles with suitable cocatalysts
title_sort efficient photocatalytic hydrogen evolution on single-crystalline metal selenide particles with suitable cocatalysts
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8159321/
https://www.ncbi.nlm.nih.gov/pubmed/34094108
http://dx.doi.org/10.1039/d0sc01167c
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