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Efficient Photocatalytic Hydrogen Evolution over TiO(2-X) Mesoporous Spheres-ZnO Nanorods Heterojunction

Photocatalytic water splitting into hydrogen is regarded as one of the key solutions to the deterioration of the global environment and energy. Due to the significantly reduced grain boundaries, ZnO nanorods facilitate a fast electron transfer through their smooth tunnels and are well suited as a ph...

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Autores principales: Zhang, BingKe, Li, Qi, Wang, Dongbo, Wang, Jinzhong, Jiang, Baojiang, Jiao, Shujie, Liu, DongHao, Zeng, Zhi, Zhao, ChenChen, Liu, YaXin, Xun, ZhiKun, Fang, Xuan, Gao, ShiYong, Zhang, Yong, Zhao, LianCheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7690575/
https://www.ncbi.nlm.nih.gov/pubmed/33105770
http://dx.doi.org/10.3390/nano10112096
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author Zhang, BingKe
Li, Qi
Wang, Dongbo
Wang, Jinzhong
Jiang, Baojiang
Jiao, Shujie
Liu, DongHao
Zeng, Zhi
Zhao, ChenChen
Liu, YaXin
Xun, ZhiKun
Fang, Xuan
Gao, ShiYong
Zhang, Yong
Zhao, LianCheng
author_facet Zhang, BingKe
Li, Qi
Wang, Dongbo
Wang, Jinzhong
Jiang, Baojiang
Jiao, Shujie
Liu, DongHao
Zeng, Zhi
Zhao, ChenChen
Liu, YaXin
Xun, ZhiKun
Fang, Xuan
Gao, ShiYong
Zhang, Yong
Zhao, LianCheng
author_sort Zhang, BingKe
collection PubMed
description Photocatalytic water splitting into hydrogen is regarded as one of the key solutions to the deterioration of the global environment and energy. Due to the significantly reduced grain boundaries, ZnO nanorods facilitate a fast electron transfer through their smooth tunnels and are well suited as a photocatalyst. However, the photocatalytic hydrogen evolution performance of pristine ZnO nanorods is still low due to the high recombination rate of photogenerated electron-hole pairs and the less light absorption. Here, a novel structure about black ZnO nanorods (NRs)/TiO(2-X) mesoporous spheres (MSs) heterojunction has been prepared and the photocatalytic hydrogen evolution performance has been explored. The photocatalytic activity test results showed that ZnO NRs/TiO(2-X) MSs exhibited higher catalytic activity than ZnO NRs for hydrogen production. Compared to the pure ZnO NRs photoanode, the photocurrent of ZnO NRs/TiO(2-X) MSs heterojunction photoanode could reach 0.41 mA/cm(2) in view of the expanding spectral response region and effective inhibition of e(−)/h(+) recombination at the same condition. Using a relatively integrated experimental investigation and mechanism analysis, we scrutinized that after being treated with NaBH(4), TiO(2) MSs introduce oxygen vacancies expanding the photocatalytic activity of pure TiO(2), and improving conductivity and charge transport capabilities through coating on ZnO NRs. More importantly, the results provide a promising approach in the NRs/MSs composite structure serving as photoanodes for photocatalytic hydrogen production.
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spelling pubmed-76905752020-11-27 Efficient Photocatalytic Hydrogen Evolution over TiO(2-X) Mesoporous Spheres-ZnO Nanorods Heterojunction Zhang, BingKe Li, Qi Wang, Dongbo Wang, Jinzhong Jiang, Baojiang Jiao, Shujie Liu, DongHao Zeng, Zhi Zhao, ChenChen Liu, YaXin Xun, ZhiKun Fang, Xuan Gao, ShiYong Zhang, Yong Zhao, LianCheng Nanomaterials (Basel) Article Photocatalytic water splitting into hydrogen is regarded as one of the key solutions to the deterioration of the global environment and energy. Due to the significantly reduced grain boundaries, ZnO nanorods facilitate a fast electron transfer through their smooth tunnels and are well suited as a photocatalyst. However, the photocatalytic hydrogen evolution performance of pristine ZnO nanorods is still low due to the high recombination rate of photogenerated electron-hole pairs and the less light absorption. Here, a novel structure about black ZnO nanorods (NRs)/TiO(2-X) mesoporous spheres (MSs) heterojunction has been prepared and the photocatalytic hydrogen evolution performance has been explored. The photocatalytic activity test results showed that ZnO NRs/TiO(2-X) MSs exhibited higher catalytic activity than ZnO NRs for hydrogen production. Compared to the pure ZnO NRs photoanode, the photocurrent of ZnO NRs/TiO(2-X) MSs heterojunction photoanode could reach 0.41 mA/cm(2) in view of the expanding spectral response region and effective inhibition of e(−)/h(+) recombination at the same condition. Using a relatively integrated experimental investigation and mechanism analysis, we scrutinized that after being treated with NaBH(4), TiO(2) MSs introduce oxygen vacancies expanding the photocatalytic activity of pure TiO(2), and improving conductivity and charge transport capabilities through coating on ZnO NRs. More importantly, the results provide a promising approach in the NRs/MSs composite structure serving as photoanodes for photocatalytic hydrogen production. MDPI 2020-10-22 /pmc/articles/PMC7690575/ /pubmed/33105770 http://dx.doi.org/10.3390/nano10112096 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, BingKe
Li, Qi
Wang, Dongbo
Wang, Jinzhong
Jiang, Baojiang
Jiao, Shujie
Liu, DongHao
Zeng, Zhi
Zhao, ChenChen
Liu, YaXin
Xun, ZhiKun
Fang, Xuan
Gao, ShiYong
Zhang, Yong
Zhao, LianCheng
Efficient Photocatalytic Hydrogen Evolution over TiO(2-X) Mesoporous Spheres-ZnO Nanorods Heterojunction
title Efficient Photocatalytic Hydrogen Evolution over TiO(2-X) Mesoporous Spheres-ZnO Nanorods Heterojunction
title_full Efficient Photocatalytic Hydrogen Evolution over TiO(2-X) Mesoporous Spheres-ZnO Nanorods Heterojunction
title_fullStr Efficient Photocatalytic Hydrogen Evolution over TiO(2-X) Mesoporous Spheres-ZnO Nanorods Heterojunction
title_full_unstemmed Efficient Photocatalytic Hydrogen Evolution over TiO(2-X) Mesoporous Spheres-ZnO Nanorods Heterojunction
title_short Efficient Photocatalytic Hydrogen Evolution over TiO(2-X) Mesoporous Spheres-ZnO Nanorods Heterojunction
title_sort efficient photocatalytic hydrogen evolution over tio(2-x) mesoporous spheres-zno nanorods heterojunction
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7690575/
https://www.ncbi.nlm.nih.gov/pubmed/33105770
http://dx.doi.org/10.3390/nano10112096
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