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Two-dimensional graphitic carbon nitride/N-doped carbon with a direct Z-scheme heterojunction for photocatalytic generation of hydrogen

Photocatalysts with a direct Z-scheme heterojunction are promising by virtue of the effectively enhanced separation of charge carriers, high retention of redox ability and the absence of backward photocatalytic reactions. Their activity depends on band alignment and interfacial configurations betwee...

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Autores principales: Wang, Jing, Sun, Youcai, Lai, Jianwei, Pan, Runhui, Fan, Yulei, Wu, Xiongwei, Ou, Man, Zhu, Yusong, Fu, Lijun, Shi, Feifei, Wu, Yuping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9419065/
https://www.ncbi.nlm.nih.gov/pubmed/36132663
http://dx.doi.org/10.1039/d1na00629k
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author Wang, Jing
Sun, Youcai
Lai, Jianwei
Pan, Runhui
Fan, Yulei
Wu, Xiongwei
Ou, Man
Zhu, Yusong
Fu, Lijun
Shi, Feifei
Wu, Yuping
author_facet Wang, Jing
Sun, Youcai
Lai, Jianwei
Pan, Runhui
Fan, Yulei
Wu, Xiongwei
Ou, Man
Zhu, Yusong
Fu, Lijun
Shi, Feifei
Wu, Yuping
author_sort Wang, Jing
collection PubMed
description Photocatalysts with a direct Z-scheme heterojunction are promising by virtue of the effectively enhanced separation of charge carriers, high retention of redox ability and the absence of backward photocatalytic reactions. Their activity depends on band alignment and interfacial configurations between two semiconductors for charge carrier kinetics and the effective active sites for photochemical reactions. Herein, a two-dimensional (2D) graphitic carbon nitride/N-doped carbon (C(3)N(4)/NC) photocatalyst is synthesized by a gas template (NH(4)Cl)-assisted thermal condensation method. C(3)N(4)/NC has the synthetic merits of a direct Z-scheme heterojunction, 2D–2D interfacial contact, and enhanced specific surface area to improve charge separation kinetics and provide abundant active sites for photochemical reaction. It exhibits an over 46-fold increase of the photocatalytic hydrogen production rate compared to bulk C(3)N(4) under visible light illumination. This work demonstrates the great potential of 2D Z-scheme heterojunctions for photocatalysis and will inspire more related work in the future.
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spelling pubmed-94190652022-09-20 Two-dimensional graphitic carbon nitride/N-doped carbon with a direct Z-scheme heterojunction for photocatalytic generation of hydrogen Wang, Jing Sun, Youcai Lai, Jianwei Pan, Runhui Fan, Yulei Wu, Xiongwei Ou, Man Zhu, Yusong Fu, Lijun Shi, Feifei Wu, Yuping Nanoscale Adv Chemistry Photocatalysts with a direct Z-scheme heterojunction are promising by virtue of the effectively enhanced separation of charge carriers, high retention of redox ability and the absence of backward photocatalytic reactions. Their activity depends on band alignment and interfacial configurations between two semiconductors for charge carrier kinetics and the effective active sites for photochemical reactions. Herein, a two-dimensional (2D) graphitic carbon nitride/N-doped carbon (C(3)N(4)/NC) photocatalyst is synthesized by a gas template (NH(4)Cl)-assisted thermal condensation method. C(3)N(4)/NC has the synthetic merits of a direct Z-scheme heterojunction, 2D–2D interfacial contact, and enhanced specific surface area to improve charge separation kinetics and provide abundant active sites for photochemical reaction. It exhibits an over 46-fold increase of the photocatalytic hydrogen production rate compared to bulk C(3)N(4) under visible light illumination. This work demonstrates the great potential of 2D Z-scheme heterojunctions for photocatalysis and will inspire more related work in the future. RSC 2021-10-04 /pmc/articles/PMC9419065/ /pubmed/36132663 http://dx.doi.org/10.1039/d1na00629k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Wang, Jing
Sun, Youcai
Lai, Jianwei
Pan, Runhui
Fan, Yulei
Wu, Xiongwei
Ou, Man
Zhu, Yusong
Fu, Lijun
Shi, Feifei
Wu, Yuping
Two-dimensional graphitic carbon nitride/N-doped carbon with a direct Z-scheme heterojunction for photocatalytic generation of hydrogen
title Two-dimensional graphitic carbon nitride/N-doped carbon with a direct Z-scheme heterojunction for photocatalytic generation of hydrogen
title_full Two-dimensional graphitic carbon nitride/N-doped carbon with a direct Z-scheme heterojunction for photocatalytic generation of hydrogen
title_fullStr Two-dimensional graphitic carbon nitride/N-doped carbon with a direct Z-scheme heterojunction for photocatalytic generation of hydrogen
title_full_unstemmed Two-dimensional graphitic carbon nitride/N-doped carbon with a direct Z-scheme heterojunction for photocatalytic generation of hydrogen
title_short Two-dimensional graphitic carbon nitride/N-doped carbon with a direct Z-scheme heterojunction for photocatalytic generation of hydrogen
title_sort two-dimensional graphitic carbon nitride/n-doped carbon with a direct z-scheme heterojunction for photocatalytic generation of hydrogen
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9419065/
https://www.ncbi.nlm.nih.gov/pubmed/36132663
http://dx.doi.org/10.1039/d1na00629k
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