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A Review on the Properties and Applications of WO(3) Nanostructure-Based Optical and Electronic Devices

Tungsten oxide (WO(3)) is a wide band gap semiconductor with unintentionally n-doping performance, excellent conductivity, and high electron hall mobility, which is considered as a candidate material for application in optoelectronics. Several reviews on WO(3) and its derivatives for various applica...

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Autores principales: Yao, Yu, Sang, Dandan, Zou, Liangrui, Wang, Qinglin, Liu, Cailong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8398115/
https://www.ncbi.nlm.nih.gov/pubmed/34443966
http://dx.doi.org/10.3390/nano11082136
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author Yao, Yu
Sang, Dandan
Zou, Liangrui
Wang, Qinglin
Liu, Cailong
author_facet Yao, Yu
Sang, Dandan
Zou, Liangrui
Wang, Qinglin
Liu, Cailong
author_sort Yao, Yu
collection PubMed
description Tungsten oxide (WO(3)) is a wide band gap semiconductor with unintentionally n-doping performance, excellent conductivity, and high electron hall mobility, which is considered as a candidate material for application in optoelectronics. Several reviews on WO(3) and its derivatives for various applications dealing with electrochemical, photoelectrochemical, hybrid photocatalysts, electrochemical energy storage, and gas sensors have appeared recently. Moreover, the nanostructured transition metal oxides have attracted considerable attention in the past decade because of their unique chemical, photochromic, and physical properties leading to numerous other potential applications. Owing to their distinctive photoluminescence (PL), electrochromic and electrical properties, WO(3) nanostructure-based optical and electronic devices application have attracted a wide range of research interests. This review mainly focuses on the up-to-date progress in different advanced strategies from fundamental analysis to improve WO(3) optoelectric, electrochromic, and photochromic properties in the development of tungsten oxide-based advanced devices for optical and electronic applications including photodetectors, light-emitting diodes (LED), PL properties, electrical properties, and optical information storage. This review on the prior findings of WO(3)-related optical and electrical devices, as well as concluding remarks and forecasts will help researchers to advance the field of optoelectric applications of nanostructured transition metal oxides.
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spelling pubmed-83981152021-08-29 A Review on the Properties and Applications of WO(3) Nanostructure-Based Optical and Electronic Devices Yao, Yu Sang, Dandan Zou, Liangrui Wang, Qinglin Liu, Cailong Nanomaterials (Basel) Review Tungsten oxide (WO(3)) is a wide band gap semiconductor with unintentionally n-doping performance, excellent conductivity, and high electron hall mobility, which is considered as a candidate material for application in optoelectronics. Several reviews on WO(3) and its derivatives for various applications dealing with electrochemical, photoelectrochemical, hybrid photocatalysts, electrochemical energy storage, and gas sensors have appeared recently. Moreover, the nanostructured transition metal oxides have attracted considerable attention in the past decade because of their unique chemical, photochromic, and physical properties leading to numerous other potential applications. Owing to their distinctive photoluminescence (PL), electrochromic and electrical properties, WO(3) nanostructure-based optical and electronic devices application have attracted a wide range of research interests. This review mainly focuses on the up-to-date progress in different advanced strategies from fundamental analysis to improve WO(3) optoelectric, electrochromic, and photochromic properties in the development of tungsten oxide-based advanced devices for optical and electronic applications including photodetectors, light-emitting diodes (LED), PL properties, electrical properties, and optical information storage. This review on the prior findings of WO(3)-related optical and electrical devices, as well as concluding remarks and forecasts will help researchers to advance the field of optoelectric applications of nanostructured transition metal oxides. MDPI 2021-08-22 /pmc/articles/PMC8398115/ /pubmed/34443966 http://dx.doi.org/10.3390/nano11082136 Text en © 2021 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 Review
Yao, Yu
Sang, Dandan
Zou, Liangrui
Wang, Qinglin
Liu, Cailong
A Review on the Properties and Applications of WO(3) Nanostructure-Based Optical and Electronic Devices
title A Review on the Properties and Applications of WO(3) Nanostructure-Based Optical and Electronic Devices
title_full A Review on the Properties and Applications of WO(3) Nanostructure-Based Optical and Electronic Devices
title_fullStr A Review on the Properties and Applications of WO(3) Nanostructure-Based Optical and Electronic Devices
title_full_unstemmed A Review on the Properties and Applications of WO(3) Nanostructure-Based Optical and Electronic Devices
title_short A Review on the Properties and Applications of WO(3) Nanostructure-Based Optical and Electronic Devices
title_sort review on the properties and applications of wo(3) nanostructure-based optical and electronic devices
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8398115/
https://www.ncbi.nlm.nih.gov/pubmed/34443966
http://dx.doi.org/10.3390/nano11082136
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