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Forming heterojunction: an effective strategy to enhance the photocatalytic efficiency of a new metal-free organic photocatalyst for water splitting

Photocatalytic water splitting is a new technology for the conversion and utilization of solar energy and has a potential prospect. One important aspect of enhancing the photocatalytic efficiency is how to improve the electron-hole separation. Up to now, there is still no ideal strategy to improve t...

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Autores principales: Li, Hengshuai, Hu, Haiquan, Bao, Chunjiang, Guo, Feng, Zhang, Xiaoming, Liu, Xiaobiao, Hua, Juan, Tan, Jie, Wang, Aizhu, Zhou, Hongcai, Yang, Bo, Qu, Yuanyuan, Liu, Xiangdong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4965868/
https://www.ncbi.nlm.nih.gov/pubmed/27470223
http://dx.doi.org/10.1038/srep29327
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author Li, Hengshuai
Hu, Haiquan
Bao, Chunjiang
Guo, Feng
Zhang, Xiaoming
Liu, Xiaobiao
Hua, Juan
Tan, Jie
Wang, Aizhu
Zhou, Hongcai
Yang, Bo
Qu, Yuanyuan
Liu, Xiangdong
author_facet Li, Hengshuai
Hu, Haiquan
Bao, Chunjiang
Guo, Feng
Zhang, Xiaoming
Liu, Xiaobiao
Hua, Juan
Tan, Jie
Wang, Aizhu
Zhou, Hongcai
Yang, Bo
Qu, Yuanyuan
Liu, Xiangdong
author_sort Li, Hengshuai
collection PubMed
description Photocatalytic water splitting is a new technology for the conversion and utilization of solar energy and has a potential prospect. One important aspect of enhancing the photocatalytic efficiency is how to improve the electron-hole separation. Up to now, there is still no ideal strategy to improve the electron-hole separation. In this article, for metal-free organic photocatalysts, we propose a good strategy- forming heterojunction, which can effectively improve the electron-hole separation. We provide a metal-free organic photocatalyst g-C(12)N(7)H(3) for water splitting. The stability of g-C(12)N(7)H(3) has been investigated, the X-ray diffraction spectra has been simulated. Using first-principles calculations, we have systematically studied the electronic structure, band edge alignment, and optical properties for the g-C(12)N(7)H(3). The results demonstrated that g-C(12)N(7)H(3) is a new organocatalyst material for water splitting. In order to enhance the photocatalytic efficiency, we provided four strategies, i.e., multilayer stacking, raising N atoms, forming g-C(9)N(10)/g-C(12)N(7)H(3) heterojunction, and forming graphene/g-C(12)N(7)H(3) heterojunction. Our research is expected to stimulate experimentalists to further study novel 2D metal-free organic materials as visible light photocatalysts. Our strategies, especially forming heterojunction, will substantially help to enhance the photocatalytic efficiency of metal-free organic photocatalyst.
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spelling pubmed-49658682016-08-08 Forming heterojunction: an effective strategy to enhance the photocatalytic efficiency of a new metal-free organic photocatalyst for water splitting Li, Hengshuai Hu, Haiquan Bao, Chunjiang Guo, Feng Zhang, Xiaoming Liu, Xiaobiao Hua, Juan Tan, Jie Wang, Aizhu Zhou, Hongcai Yang, Bo Qu, Yuanyuan Liu, Xiangdong Sci Rep Article Photocatalytic water splitting is a new technology for the conversion and utilization of solar energy and has a potential prospect. One important aspect of enhancing the photocatalytic efficiency is how to improve the electron-hole separation. Up to now, there is still no ideal strategy to improve the electron-hole separation. In this article, for metal-free organic photocatalysts, we propose a good strategy- forming heterojunction, which can effectively improve the electron-hole separation. We provide a metal-free organic photocatalyst g-C(12)N(7)H(3) for water splitting. The stability of g-C(12)N(7)H(3) has been investigated, the X-ray diffraction spectra has been simulated. Using first-principles calculations, we have systematically studied the electronic structure, band edge alignment, and optical properties for the g-C(12)N(7)H(3). The results demonstrated that g-C(12)N(7)H(3) is a new organocatalyst material for water splitting. In order to enhance the photocatalytic efficiency, we provided four strategies, i.e., multilayer stacking, raising N atoms, forming g-C(9)N(10)/g-C(12)N(7)H(3) heterojunction, and forming graphene/g-C(12)N(7)H(3) heterojunction. Our research is expected to stimulate experimentalists to further study novel 2D metal-free organic materials as visible light photocatalysts. Our strategies, especially forming heterojunction, will substantially help to enhance the photocatalytic efficiency of metal-free organic photocatalyst. Nature Publishing Group 2016-07-29 /pmc/articles/PMC4965868/ /pubmed/27470223 http://dx.doi.org/10.1038/srep29327 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Li, Hengshuai
Hu, Haiquan
Bao, Chunjiang
Guo, Feng
Zhang, Xiaoming
Liu, Xiaobiao
Hua, Juan
Tan, Jie
Wang, Aizhu
Zhou, Hongcai
Yang, Bo
Qu, Yuanyuan
Liu, Xiangdong
Forming heterojunction: an effective strategy to enhance the photocatalytic efficiency of a new metal-free organic photocatalyst for water splitting
title Forming heterojunction: an effective strategy to enhance the photocatalytic efficiency of a new metal-free organic photocatalyst for water splitting
title_full Forming heterojunction: an effective strategy to enhance the photocatalytic efficiency of a new metal-free organic photocatalyst for water splitting
title_fullStr Forming heterojunction: an effective strategy to enhance the photocatalytic efficiency of a new metal-free organic photocatalyst for water splitting
title_full_unstemmed Forming heterojunction: an effective strategy to enhance the photocatalytic efficiency of a new metal-free organic photocatalyst for water splitting
title_short Forming heterojunction: an effective strategy to enhance the photocatalytic efficiency of a new metal-free organic photocatalyst for water splitting
title_sort forming heterojunction: an effective strategy to enhance the photocatalytic efficiency of a new metal-free organic photocatalyst for water splitting
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4965868/
https://www.ncbi.nlm.nih.gov/pubmed/27470223
http://dx.doi.org/10.1038/srep29327
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