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Ultrafast synthesis of near-zero-cost S-doped Ni(OH)(2) on C(3)N(5) under ambient conditions with enhanced photocatalytic activity

Planting highly efficient and low-cost Ni-based noble-metal-free active sites on semiconductors is of great significance in the field of photocatalysis. Herein, taking wide visible-light-responsive 2D C(3)N(5) as a model semiconductor, an impressive near-zero-cost 2D S-doped nickel hydroxide (S–Ni(O...

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Autores principales: Han, Lixiao, Peng, Cong, Huang, Jinming, Wang, Shengyao, Zhang, Xiaohu, Chen, Hao, Yang, Yi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9043441/
https://www.ncbi.nlm.nih.gov/pubmed/35492785
http://dx.doi.org/10.1039/d1ra07275g
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author Han, Lixiao
Peng, Cong
Huang, Jinming
Wang, Shengyao
Zhang, Xiaohu
Chen, Hao
Yang, Yi
author_facet Han, Lixiao
Peng, Cong
Huang, Jinming
Wang, Shengyao
Zhang, Xiaohu
Chen, Hao
Yang, Yi
author_sort Han, Lixiao
collection PubMed
description Planting highly efficient and low-cost Ni-based noble-metal-free active sites on semiconductors is of great significance in the field of photocatalysis. Herein, taking wide visible-light-responsive 2D C(3)N(5) as a model semiconductor, an impressive near-zero-cost 2D S-doped nickel hydroxide (S–Ni(OH)(2)) is grown on C(3)N(5) ultrafast within 30 min under ambient conditions by facile reaction between extremely low-cost Ni(NO(3))(2) and Na(2)S in aqueous solution. The fabricated 2D S–Ni(OH)(2)–C(3)N(5) hybrid exhibits enhanced photocatalytic performance for both H(2) production from water and NO removal for air purification. The H(2) production rate on S–Ni(OH)(2)–C(3)N(5) is ∼7 times higher than that of Ni(OH)(2)–C(3)N(5) and even slightly higher than that of Pt–C(3)N(5), demonstrating its potential as a candidate for noble metal catalysts like Pt. In particular, an apparent quantum yield (AQY) value of 30.9% at 420 nm for H(2) production is reached on 1.0 wt% S–Ni(OH)(2)–C(3)N(5) due to quick internal charge transfer efficiency. In addition, ∼42% of NO can be purified in a continuous flow reaction system. This work affords a cost-efficient strategy to steer the photocatalytic property of Ni-based catalysts.
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spelling pubmed-90434412022-04-28 Ultrafast synthesis of near-zero-cost S-doped Ni(OH)(2) on C(3)N(5) under ambient conditions with enhanced photocatalytic activity Han, Lixiao Peng, Cong Huang, Jinming Wang, Shengyao Zhang, Xiaohu Chen, Hao Yang, Yi RSC Adv Chemistry Planting highly efficient and low-cost Ni-based noble-metal-free active sites on semiconductors is of great significance in the field of photocatalysis. Herein, taking wide visible-light-responsive 2D C(3)N(5) as a model semiconductor, an impressive near-zero-cost 2D S-doped nickel hydroxide (S–Ni(OH)(2)) is grown on C(3)N(5) ultrafast within 30 min under ambient conditions by facile reaction between extremely low-cost Ni(NO(3))(2) and Na(2)S in aqueous solution. The fabricated 2D S–Ni(OH)(2)–C(3)N(5) hybrid exhibits enhanced photocatalytic performance for both H(2) production from water and NO removal for air purification. The H(2) production rate on S–Ni(OH)(2)–C(3)N(5) is ∼7 times higher than that of Ni(OH)(2)–C(3)N(5) and even slightly higher than that of Pt–C(3)N(5), demonstrating its potential as a candidate for noble metal catalysts like Pt. In particular, an apparent quantum yield (AQY) value of 30.9% at 420 nm for H(2) production is reached on 1.0 wt% S–Ni(OH)(2)–C(3)N(5) due to quick internal charge transfer efficiency. In addition, ∼42% of NO can be purified in a continuous flow reaction system. This work affords a cost-efficient strategy to steer the photocatalytic property of Ni-based catalysts. The Royal Society of Chemistry 2021-11-10 /pmc/articles/PMC9043441/ /pubmed/35492785 http://dx.doi.org/10.1039/d1ra07275g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Han, Lixiao
Peng, Cong
Huang, Jinming
Wang, Shengyao
Zhang, Xiaohu
Chen, Hao
Yang, Yi
Ultrafast synthesis of near-zero-cost S-doped Ni(OH)(2) on C(3)N(5) under ambient conditions with enhanced photocatalytic activity
title Ultrafast synthesis of near-zero-cost S-doped Ni(OH)(2) on C(3)N(5) under ambient conditions with enhanced photocatalytic activity
title_full Ultrafast synthesis of near-zero-cost S-doped Ni(OH)(2) on C(3)N(5) under ambient conditions with enhanced photocatalytic activity
title_fullStr Ultrafast synthesis of near-zero-cost S-doped Ni(OH)(2) on C(3)N(5) under ambient conditions with enhanced photocatalytic activity
title_full_unstemmed Ultrafast synthesis of near-zero-cost S-doped Ni(OH)(2) on C(3)N(5) under ambient conditions with enhanced photocatalytic activity
title_short Ultrafast synthesis of near-zero-cost S-doped Ni(OH)(2) on C(3)N(5) under ambient conditions with enhanced photocatalytic activity
title_sort ultrafast synthesis of near-zero-cost s-doped ni(oh)(2) on c(3)n(5) under ambient conditions with enhanced photocatalytic activity
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9043441/
https://www.ncbi.nlm.nih.gov/pubmed/35492785
http://dx.doi.org/10.1039/d1ra07275g
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