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Fabrication of Noble-Metal-Free Mo(2)C/CdIn(2)S(4) Heterojunction Composites with Elevated Carrier Separation for Photocatalytic Hydrogen Production

Molybdenum-based cocatalyst being used to construct heterojunctions for efficient photocatalytic H(2) production is a promising research hotspot. In this work, CdIn(2)S(4) was successfully closely supported on bulk Mo(2)C via the hydrothermal method. Based on their matching band structures, they for...

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Autores principales: Qiu, Hong, Ma, Xiaohui, Fan, Hongxia, Fan, Yueyan, Li, Yajie, Zhou, Hualei, Li, Wenjun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10057527/
https://www.ncbi.nlm.nih.gov/pubmed/36985480
http://dx.doi.org/10.3390/molecules28062508
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author Qiu, Hong
Ma, Xiaohui
Fan, Hongxia
Fan, Yueyan
Li, Yajie
Zhou, Hualei
Li, Wenjun
author_facet Qiu, Hong
Ma, Xiaohui
Fan, Hongxia
Fan, Yueyan
Li, Yajie
Zhou, Hualei
Li, Wenjun
author_sort Qiu, Hong
collection PubMed
description Molybdenum-based cocatalyst being used to construct heterojunctions for efficient photocatalytic H(2) production is a promising research hotspot. In this work, CdIn(2)S(4) was successfully closely supported on bulk Mo(2)C via the hydrothermal method. Based on their matching band structures, they formed a Type Ⅰ heterojunction after the combination of Mo(2)C (1.1 eV, −0.27 V, 0.83 V) and CdIn(2)S(4) (2.3 eV, −0.74 V, 1.56 V). A series of characterizations proved that the heterojunction composite had higher charge separation efficiency compared to a single compound. Meanwhile, Mo(2)C in heterojunction could act as an active site for hydrogen production. The photocatalytic H(2) production activity of the heterojunction composites was significantly improved, and the maximum activity was up to 1178.32 μmmol h(−1) g(−1) for 5Mo(2)C/CdIn(2)S(4) composites. 5Mo(2)C/CdIn(2)S(4) heterojunction composites possess excellent durability in three cycles (loss of 6%). Additionally, the mechanism of increased activity for composites was also investigated. This study provides a guide to designing noble-metal-free photocatalyst for highly efficient photocatalytic H(2) evolution.
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spelling pubmed-100575272023-03-30 Fabrication of Noble-Metal-Free Mo(2)C/CdIn(2)S(4) Heterojunction Composites with Elevated Carrier Separation for Photocatalytic Hydrogen Production Qiu, Hong Ma, Xiaohui Fan, Hongxia Fan, Yueyan Li, Yajie Zhou, Hualei Li, Wenjun Molecules Article Molybdenum-based cocatalyst being used to construct heterojunctions for efficient photocatalytic H(2) production is a promising research hotspot. In this work, CdIn(2)S(4) was successfully closely supported on bulk Mo(2)C via the hydrothermal method. Based on their matching band structures, they formed a Type Ⅰ heterojunction after the combination of Mo(2)C (1.1 eV, −0.27 V, 0.83 V) and CdIn(2)S(4) (2.3 eV, −0.74 V, 1.56 V). A series of characterizations proved that the heterojunction composite had higher charge separation efficiency compared to a single compound. Meanwhile, Mo(2)C in heterojunction could act as an active site for hydrogen production. The photocatalytic H(2) production activity of the heterojunction composites was significantly improved, and the maximum activity was up to 1178.32 μmmol h(−1) g(−1) for 5Mo(2)C/CdIn(2)S(4) composites. 5Mo(2)C/CdIn(2)S(4) heterojunction composites possess excellent durability in three cycles (loss of 6%). Additionally, the mechanism of increased activity for composites was also investigated. This study provides a guide to designing noble-metal-free photocatalyst for highly efficient photocatalytic H(2) evolution. MDPI 2023-03-09 /pmc/articles/PMC10057527/ /pubmed/36985480 http://dx.doi.org/10.3390/molecules28062508 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Qiu, Hong
Ma, Xiaohui
Fan, Hongxia
Fan, Yueyan
Li, Yajie
Zhou, Hualei
Li, Wenjun
Fabrication of Noble-Metal-Free Mo(2)C/CdIn(2)S(4) Heterojunction Composites with Elevated Carrier Separation for Photocatalytic Hydrogen Production
title Fabrication of Noble-Metal-Free Mo(2)C/CdIn(2)S(4) Heterojunction Composites with Elevated Carrier Separation for Photocatalytic Hydrogen Production
title_full Fabrication of Noble-Metal-Free Mo(2)C/CdIn(2)S(4) Heterojunction Composites with Elevated Carrier Separation for Photocatalytic Hydrogen Production
title_fullStr Fabrication of Noble-Metal-Free Mo(2)C/CdIn(2)S(4) Heterojunction Composites with Elevated Carrier Separation for Photocatalytic Hydrogen Production
title_full_unstemmed Fabrication of Noble-Metal-Free Mo(2)C/CdIn(2)S(4) Heterojunction Composites with Elevated Carrier Separation for Photocatalytic Hydrogen Production
title_short Fabrication of Noble-Metal-Free Mo(2)C/CdIn(2)S(4) Heterojunction Composites with Elevated Carrier Separation for Photocatalytic Hydrogen Production
title_sort fabrication of noble-metal-free mo(2)c/cdin(2)s(4) heterojunction composites with elevated carrier separation for photocatalytic hydrogen production
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10057527/
https://www.ncbi.nlm.nih.gov/pubmed/36985480
http://dx.doi.org/10.3390/molecules28062508
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