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High-performance Vo-ZnO/ZnS benefiting nanoarchitectonics from the synergism between defect engineering and surface engineering for photoelectrochemical glucose sensors

In this study, a ZnO/ZnS nanocluster heterojunction photoelectrode rich in surface oxygen defects (Vo-ZnO/ZnS) was prepared by applying a simple in situ anion substitution and nitrogen atmosphere annealing method. The synergism between defect and surface engineering significantly improved the photoc...

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Autores principales: Xu, Yongtao, Yan, Bingdong, Lai, Caiyan, Wang, Mingyu, Cao, Yang, Tu, Jinchun, Chen, Delun, Liu, Youbin, Wu, Qiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10312125/
https://www.ncbi.nlm.nih.gov/pubmed/37396832
http://dx.doi.org/10.1039/d3ra02869k
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author Xu, Yongtao
Yan, Bingdong
Lai, Caiyan
Wang, Mingyu
Cao, Yang
Tu, Jinchun
Chen, Delun
Liu, Youbin
Wu, Qiang
author_facet Xu, Yongtao
Yan, Bingdong
Lai, Caiyan
Wang, Mingyu
Cao, Yang
Tu, Jinchun
Chen, Delun
Liu, Youbin
Wu, Qiang
author_sort Xu, Yongtao
collection PubMed
description In this study, a ZnO/ZnS nanocluster heterojunction photoelectrode rich in surface oxygen defects (Vo-ZnO/ZnS) was prepared by applying a simple in situ anion substitution and nitrogen atmosphere annealing method. The synergism between defect and surface engineering significantly improved the photocatalysts. Given this synergism, Vo-ZnO/ZnS was endowed with a long carrier lifetime, narrow band gap, high carrier density, and high performance toward electron transfer under light conditions. Thus, Vo-ZnO/ZnS had three times the photocurrent density of ZnO under light illumination. To further evaluate its advantages in the field of photoelectric bioassay, Vo-ZnO/ZnS was applied as the photocathode of photoelectric sensor system for glucose detection. Vo-ZnO/ZnS showed excellent performance in glucose detection in various aspects, including a low detection limit, high detection sensitivity, and a wide detection range.
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spelling pubmed-103121252023-07-01 High-performance Vo-ZnO/ZnS benefiting nanoarchitectonics from the synergism between defect engineering and surface engineering for photoelectrochemical glucose sensors Xu, Yongtao Yan, Bingdong Lai, Caiyan Wang, Mingyu Cao, Yang Tu, Jinchun Chen, Delun Liu, Youbin Wu, Qiang RSC Adv Chemistry In this study, a ZnO/ZnS nanocluster heterojunction photoelectrode rich in surface oxygen defects (Vo-ZnO/ZnS) was prepared by applying a simple in situ anion substitution and nitrogen atmosphere annealing method. The synergism between defect and surface engineering significantly improved the photocatalysts. Given this synergism, Vo-ZnO/ZnS was endowed with a long carrier lifetime, narrow band gap, high carrier density, and high performance toward electron transfer under light conditions. Thus, Vo-ZnO/ZnS had three times the photocurrent density of ZnO under light illumination. To further evaluate its advantages in the field of photoelectric bioassay, Vo-ZnO/ZnS was applied as the photocathode of photoelectric sensor system for glucose detection. Vo-ZnO/ZnS showed excellent performance in glucose detection in various aspects, including a low detection limit, high detection sensitivity, and a wide detection range. The Royal Society of Chemistry 2023-06-30 /pmc/articles/PMC10312125/ /pubmed/37396832 http://dx.doi.org/10.1039/d3ra02869k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Xu, Yongtao
Yan, Bingdong
Lai, Caiyan
Wang, Mingyu
Cao, Yang
Tu, Jinchun
Chen, Delun
Liu, Youbin
Wu, Qiang
High-performance Vo-ZnO/ZnS benefiting nanoarchitectonics from the synergism between defect engineering and surface engineering for photoelectrochemical glucose sensors
title High-performance Vo-ZnO/ZnS benefiting nanoarchitectonics from the synergism between defect engineering and surface engineering for photoelectrochemical glucose sensors
title_full High-performance Vo-ZnO/ZnS benefiting nanoarchitectonics from the synergism between defect engineering and surface engineering for photoelectrochemical glucose sensors
title_fullStr High-performance Vo-ZnO/ZnS benefiting nanoarchitectonics from the synergism between defect engineering and surface engineering for photoelectrochemical glucose sensors
title_full_unstemmed High-performance Vo-ZnO/ZnS benefiting nanoarchitectonics from the synergism between defect engineering and surface engineering for photoelectrochemical glucose sensors
title_short High-performance Vo-ZnO/ZnS benefiting nanoarchitectonics from the synergism between defect engineering and surface engineering for photoelectrochemical glucose sensors
title_sort high-performance vo-zno/zns benefiting nanoarchitectonics from the synergism between defect engineering and surface engineering for photoelectrochemical glucose sensors
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10312125/
https://www.ncbi.nlm.nih.gov/pubmed/37396832
http://dx.doi.org/10.1039/d3ra02869k
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