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Investigation of an Electrochromic Device Based on Ammonium Metatungstate-Iron (II) Chloride Electrochromic Liquid

Even though electrochromism has been around for more than 50 years, it still has several issues. Multi-layered films, high manufacturing costs, and a short lifetime are present in existing electrochromic devices. We demonstrate a unique high-performance device with a basic structure and no solid ele...

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Autores principales: Kong, Sifan, Zhang, Guanguang, Li, Muyun, Yao, Rihui, Guo, Chenxiao, Ning, Honglong, Zhang, Jianzhi, Tao, Ruiqiang, Yan, Haoyang, Lu, Xubing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9460927/
https://www.ncbi.nlm.nih.gov/pubmed/36014270
http://dx.doi.org/10.3390/mi13081345
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author Kong, Sifan
Zhang, Guanguang
Li, Muyun
Yao, Rihui
Guo, Chenxiao
Ning, Honglong
Zhang, Jianzhi
Tao, Ruiqiang
Yan, Haoyang
Lu, Xubing
author_facet Kong, Sifan
Zhang, Guanguang
Li, Muyun
Yao, Rihui
Guo, Chenxiao
Ning, Honglong
Zhang, Jianzhi
Tao, Ruiqiang
Yan, Haoyang
Lu, Xubing
author_sort Kong, Sifan
collection PubMed
description Even though electrochromism has been around for more than 50 years, it still has several issues. Multi-layered films, high manufacturing costs, and a short lifetime are present in existing electrochromic devices. We demonstrate a unique high-performance device with a basic structure and no solid electrochromic sheets in this work. In this device, the electrolyte layer is also avoided. The device uses an electrochromic solution prepared from a mixture of ammonium metatungstate and iron (II) chloride solution as a functional layer with reversible redox properties. The tungstate ions on the electrode surface are reduced when the device is colored, and the Fe(2+) on the electrode surface is oxidized on another electrode surface. The generated Fe(3+) in the mixed functional layer oxidizes the previously reduced tungstate ions as the device fades. We determined the ΔT (transmittance modulation) and response time among ammonium metatungstate ratios, iron (II) chloride ratios, and driven current density using DOE (design of experiment) trials. Using 0.175 mol/L ammonium metatungstate and 0.30 mol/L iron (II) chloride, a device with outstanding ΔT (more than 57% at 700 nm), a short response time (less than 10 s), and high coloring efficiency (160.04 cm(2)/C at 700 nm) is demonstrated.
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spelling pubmed-94609272022-09-10 Investigation of an Electrochromic Device Based on Ammonium Metatungstate-Iron (II) Chloride Electrochromic Liquid Kong, Sifan Zhang, Guanguang Li, Muyun Yao, Rihui Guo, Chenxiao Ning, Honglong Zhang, Jianzhi Tao, Ruiqiang Yan, Haoyang Lu, Xubing Micromachines (Basel) Article Even though electrochromism has been around for more than 50 years, it still has several issues. Multi-layered films, high manufacturing costs, and a short lifetime are present in existing electrochromic devices. We demonstrate a unique high-performance device with a basic structure and no solid electrochromic sheets in this work. In this device, the electrolyte layer is also avoided. The device uses an electrochromic solution prepared from a mixture of ammonium metatungstate and iron (II) chloride solution as a functional layer with reversible redox properties. The tungstate ions on the electrode surface are reduced when the device is colored, and the Fe(2+) on the electrode surface is oxidized on another electrode surface. The generated Fe(3+) in the mixed functional layer oxidizes the previously reduced tungstate ions as the device fades. We determined the ΔT (transmittance modulation) and response time among ammonium metatungstate ratios, iron (II) chloride ratios, and driven current density using DOE (design of experiment) trials. Using 0.175 mol/L ammonium metatungstate and 0.30 mol/L iron (II) chloride, a device with outstanding ΔT (more than 57% at 700 nm), a short response time (less than 10 s), and high coloring efficiency (160.04 cm(2)/C at 700 nm) is demonstrated. MDPI 2022-08-19 /pmc/articles/PMC9460927/ /pubmed/36014270 http://dx.doi.org/10.3390/mi13081345 Text en © 2022 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
Kong, Sifan
Zhang, Guanguang
Li, Muyun
Yao, Rihui
Guo, Chenxiao
Ning, Honglong
Zhang, Jianzhi
Tao, Ruiqiang
Yan, Haoyang
Lu, Xubing
Investigation of an Electrochromic Device Based on Ammonium Metatungstate-Iron (II) Chloride Electrochromic Liquid
title Investigation of an Electrochromic Device Based on Ammonium Metatungstate-Iron (II) Chloride Electrochromic Liquid
title_full Investigation of an Electrochromic Device Based on Ammonium Metatungstate-Iron (II) Chloride Electrochromic Liquid
title_fullStr Investigation of an Electrochromic Device Based on Ammonium Metatungstate-Iron (II) Chloride Electrochromic Liquid
title_full_unstemmed Investigation of an Electrochromic Device Based on Ammonium Metatungstate-Iron (II) Chloride Electrochromic Liquid
title_short Investigation of an Electrochromic Device Based on Ammonium Metatungstate-Iron (II) Chloride Electrochromic Liquid
title_sort investigation of an electrochromic device based on ammonium metatungstate-iron (ii) chloride electrochromic liquid
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9460927/
https://www.ncbi.nlm.nih.gov/pubmed/36014270
http://dx.doi.org/10.3390/mi13081345
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