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Achievement of visible-light-driven Z-scheme overall water splitting using barium-modified Ta(3)N(5) as a H(2)-evolving photocatalyst

Ta(3)N(5) is one of the most promising photocatalyst candidates for solar water splitting, but it still remains challenging to achieve overall water splitting via Ta(3)N(5)-based photocatalysts regardless of whether it uses a one step or two step method. Here we will address the relatively poor phot...

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Autores principales: Qi, Yu, Chen, Shanshan, Li, Mingrun, Ding, Qian, Li, Zheng, Cui, Junyan, Dong, Beibei, Zhang, Fuxiang, Li, Can
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5365062/
https://www.ncbi.nlm.nih.gov/pubmed/28451190
http://dx.doi.org/10.1039/c6sc02750d
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author Qi, Yu
Chen, Shanshan
Li, Mingrun
Ding, Qian
Li, Zheng
Cui, Junyan
Dong, Beibei
Zhang, Fuxiang
Li, Can
author_facet Qi, Yu
Chen, Shanshan
Li, Mingrun
Ding, Qian
Li, Zheng
Cui, Junyan
Dong, Beibei
Zhang, Fuxiang
Li, Can
author_sort Qi, Yu
collection PubMed
description Ta(3)N(5) is one of the most promising photocatalyst candidates for solar water splitting, but it still remains challenging to achieve overall water splitting via Ta(3)N(5)-based photocatalysts regardless of whether it uses a one step or two step method. Here we will address the relatively poor photocatalytic proton reduction of Ta(3)N(5) with an effort for the promotion of charge separation via barium modification. One-pot nitridation of barium nitrate-impregnated Ta(2)O(5) precursor was adopted here for the synthesis of Ta(3)N(5) accompanied with the creation of a Ta(3)N(5)/BaTaO(2)N heterostructure and surface passivation. Due to the synergetic effect of the improved interfacial charge separation and the decreased defect density, the photocatalytic H(2) evolution rate of barium-modified Ta(3)N(5) is effectively promoted. Encouraged by this, a visible-light-driven Z-scheme overall water splitting system was successfully constructed by using the barium-modified Ta(3)N(5) as a H(2)-evolving photocatalyst, together with a PtO(x)/WO(3) and IO(3) (–)/I(–) pair as an O(2)-evolving photocatalyst and a redox mediator, respectively.
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spelling pubmed-53650622017-04-27 Achievement of visible-light-driven Z-scheme overall water splitting using barium-modified Ta(3)N(5) as a H(2)-evolving photocatalyst Qi, Yu Chen, Shanshan Li, Mingrun Ding, Qian Li, Zheng Cui, Junyan Dong, Beibei Zhang, Fuxiang Li, Can Chem Sci Chemistry Ta(3)N(5) is one of the most promising photocatalyst candidates for solar water splitting, but it still remains challenging to achieve overall water splitting via Ta(3)N(5)-based photocatalysts regardless of whether it uses a one step or two step method. Here we will address the relatively poor photocatalytic proton reduction of Ta(3)N(5) with an effort for the promotion of charge separation via barium modification. One-pot nitridation of barium nitrate-impregnated Ta(2)O(5) precursor was adopted here for the synthesis of Ta(3)N(5) accompanied with the creation of a Ta(3)N(5)/BaTaO(2)N heterostructure and surface passivation. Due to the synergetic effect of the improved interfacial charge separation and the decreased defect density, the photocatalytic H(2) evolution rate of barium-modified Ta(3)N(5) is effectively promoted. Encouraged by this, a visible-light-driven Z-scheme overall water splitting system was successfully constructed by using the barium-modified Ta(3)N(5) as a H(2)-evolving photocatalyst, together with a PtO(x)/WO(3) and IO(3) (–)/I(–) pair as an O(2)-evolving photocatalyst and a redox mediator, respectively. Royal Society of Chemistry 2017-01-01 2016-08-18 /pmc/articles/PMC5365062/ /pubmed/28451190 http://dx.doi.org/10.1039/c6sc02750d Text en This journal is © The Royal Society of Chemistry 2016 http://creativecommons.org/licenses/by/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution 3.0 Unported License (http://creativecommons.org/licenses/by/3.0/) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Chemistry
Qi, Yu
Chen, Shanshan
Li, Mingrun
Ding, Qian
Li, Zheng
Cui, Junyan
Dong, Beibei
Zhang, Fuxiang
Li, Can
Achievement of visible-light-driven Z-scheme overall water splitting using barium-modified Ta(3)N(5) as a H(2)-evolving photocatalyst
title Achievement of visible-light-driven Z-scheme overall water splitting using barium-modified Ta(3)N(5) as a H(2)-evolving photocatalyst
title_full Achievement of visible-light-driven Z-scheme overall water splitting using barium-modified Ta(3)N(5) as a H(2)-evolving photocatalyst
title_fullStr Achievement of visible-light-driven Z-scheme overall water splitting using barium-modified Ta(3)N(5) as a H(2)-evolving photocatalyst
title_full_unstemmed Achievement of visible-light-driven Z-scheme overall water splitting using barium-modified Ta(3)N(5) as a H(2)-evolving photocatalyst
title_short Achievement of visible-light-driven Z-scheme overall water splitting using barium-modified Ta(3)N(5) as a H(2)-evolving photocatalyst
title_sort achievement of visible-light-driven z-scheme overall water splitting using barium-modified ta(3)n(5) as a h(2)-evolving photocatalyst
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5365062/
https://www.ncbi.nlm.nih.gov/pubmed/28451190
http://dx.doi.org/10.1039/c6sc02750d
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