Cargando…

Band alignment of ZnO-based nanorod arrays for enhanced visible light photocatalytic performance

A ternary semiconductor ZnO/MoS(2)/Ag(2)S nanorod array in an intimate core–shell structure was synthesized on glass substrates. The physicochemical properties and photocatalytical performance of the specimen were characterized and compared with single ZnO and binary ZnO/Ag(2)S and ZnO/MoS(2) nanoro...

Descripción completa

Detalles Bibliográficos
Autores principales: Wan, Jing, Al-Baldawy, Aseel Shaker, Qu, Shanzhi, Lan, Jinshen, Ye, Xiaofang, Fei, Yuchen, Zhao, Jingtian, Wang, Ziyun, Hong, Rongdun, Guo, Shengshi, Huang, Shengli, Li, Shuping, Kang, Junyong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9511231/
https://www.ncbi.nlm.nih.gov/pubmed/36276038
http://dx.doi.org/10.1039/d2ra03940k
_version_ 1784797617707810816
author Wan, Jing
Al-Baldawy, Aseel Shaker
Qu, Shanzhi
Lan, Jinshen
Ye, Xiaofang
Fei, Yuchen
Zhao, Jingtian
Wang, Ziyun
Hong, Rongdun
Guo, Shengshi
Huang, Shengli
Li, Shuping
Kang, Junyong
author_facet Wan, Jing
Al-Baldawy, Aseel Shaker
Qu, Shanzhi
Lan, Jinshen
Ye, Xiaofang
Fei, Yuchen
Zhao, Jingtian
Wang, Ziyun
Hong, Rongdun
Guo, Shengshi
Huang, Shengli
Li, Shuping
Kang, Junyong
author_sort Wan, Jing
collection PubMed
description A ternary semiconductor ZnO/MoS(2)/Ag(2)S nanorod array in an intimate core–shell structure was synthesized on glass substrates. The physicochemical properties and photocatalytical performance of the specimen were characterized and compared with single ZnO and binary ZnO/Ag(2)S and ZnO/MoS(2) nanorod arrays. It is found that the coating layers depressed the band edge emission of the ZnO core, improved light absorption in the visible range, reduced charge transfer resistance, and increased photocatalytic activity. The ternary heterojunction nanorod array possessed full solar absorption with an efficiency of 52.88% for the degradation of methylene blue under visible light in 30 min. The efficiency was higher than other arrays and was 7.6 times that of the ZnO array. Theory analysis revealed that the coating layer brought different band alignment in the heterojunctions for efficient charge separation and conduction, which was beneficial for the photocatalytic performance.
format Online
Article
Text
id pubmed-9511231
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-95112312022-10-21 Band alignment of ZnO-based nanorod arrays for enhanced visible light photocatalytic performance Wan, Jing Al-Baldawy, Aseel Shaker Qu, Shanzhi Lan, Jinshen Ye, Xiaofang Fei, Yuchen Zhao, Jingtian Wang, Ziyun Hong, Rongdun Guo, Shengshi Huang, Shengli Li, Shuping Kang, Junyong RSC Adv Chemistry A ternary semiconductor ZnO/MoS(2)/Ag(2)S nanorod array in an intimate core–shell structure was synthesized on glass substrates. The physicochemical properties and photocatalytical performance of the specimen were characterized and compared with single ZnO and binary ZnO/Ag(2)S and ZnO/MoS(2) nanorod arrays. It is found that the coating layers depressed the band edge emission of the ZnO core, improved light absorption in the visible range, reduced charge transfer resistance, and increased photocatalytic activity. The ternary heterojunction nanorod array possessed full solar absorption with an efficiency of 52.88% for the degradation of methylene blue under visible light in 30 min. The efficiency was higher than other arrays and was 7.6 times that of the ZnO array. Theory analysis revealed that the coating layer brought different band alignment in the heterojunctions for efficient charge separation and conduction, which was beneficial for the photocatalytic performance. The Royal Society of Chemistry 2022-09-26 /pmc/articles/PMC9511231/ /pubmed/36276038 http://dx.doi.org/10.1039/d2ra03940k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Wan, Jing
Al-Baldawy, Aseel Shaker
Qu, Shanzhi
Lan, Jinshen
Ye, Xiaofang
Fei, Yuchen
Zhao, Jingtian
Wang, Ziyun
Hong, Rongdun
Guo, Shengshi
Huang, Shengli
Li, Shuping
Kang, Junyong
Band alignment of ZnO-based nanorod arrays for enhanced visible light photocatalytic performance
title Band alignment of ZnO-based nanorod arrays for enhanced visible light photocatalytic performance
title_full Band alignment of ZnO-based nanorod arrays for enhanced visible light photocatalytic performance
title_fullStr Band alignment of ZnO-based nanorod arrays for enhanced visible light photocatalytic performance
title_full_unstemmed Band alignment of ZnO-based nanorod arrays for enhanced visible light photocatalytic performance
title_short Band alignment of ZnO-based nanorod arrays for enhanced visible light photocatalytic performance
title_sort band alignment of zno-based nanorod arrays for enhanced visible light photocatalytic performance
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9511231/
https://www.ncbi.nlm.nih.gov/pubmed/36276038
http://dx.doi.org/10.1039/d2ra03940k
work_keys_str_mv AT wanjing bandalignmentofznobasednanorodarraysforenhancedvisiblelightphotocatalyticperformance
AT albaldawyaseelshaker bandalignmentofznobasednanorodarraysforenhancedvisiblelightphotocatalyticperformance
AT qushanzhi bandalignmentofznobasednanorodarraysforenhancedvisiblelightphotocatalyticperformance
AT lanjinshen bandalignmentofznobasednanorodarraysforenhancedvisiblelightphotocatalyticperformance
AT yexiaofang bandalignmentofznobasednanorodarraysforenhancedvisiblelightphotocatalyticperformance
AT feiyuchen bandalignmentofznobasednanorodarraysforenhancedvisiblelightphotocatalyticperformance
AT zhaojingtian bandalignmentofznobasednanorodarraysforenhancedvisiblelightphotocatalyticperformance
AT wangziyun bandalignmentofznobasednanorodarraysforenhancedvisiblelightphotocatalyticperformance
AT hongrongdun bandalignmentofznobasednanorodarraysforenhancedvisiblelightphotocatalyticperformance
AT guoshengshi bandalignmentofznobasednanorodarraysforenhancedvisiblelightphotocatalyticperformance
AT huangshengli bandalignmentofznobasednanorodarraysforenhancedvisiblelightphotocatalyticperformance
AT lishuping bandalignmentofznobasednanorodarraysforenhancedvisiblelightphotocatalyticperformance
AT kangjunyong bandalignmentofznobasednanorodarraysforenhancedvisiblelightphotocatalyticperformance