Novel Nd–Mo co-doped SnO₂/α-WO₃ electrochromic materials (ECs) for enhanced smart window performance

In an urbanized city, about a third of total electrical consumption is allocated for indoor lighting and air conditioning system in residential and commercial buildings. The majority of the worldwide energy generation comes from burning of non-renewable fossil fuel which is not sustainable in the lo...

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Main Authors: Goei, Ronn, Ong, Amanda Jiamin, Tan, Jun Hao, Loke, Jie Yi, Lua, Shun-Kuang, Mandler, Daniel, Magdassi, Shlomo, Tok, Alfred Iing Yoong
Other Authors: School of Materials Science and Engineering
Format: Article
Language:English
Published: 2022
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Online Access:https://hdl.handle.net/10356/160142
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1601422022-07-13T07:13:11Z Novel Nd–Mo co-doped SnO₂/α-WO₃ electrochromic materials (ECs) for enhanced smart window performance Goei, Ronn Ong, Amanda Jiamin Tan, Jun Hao Loke, Jie Yi Lua, Shun-Kuang Mandler, Daniel Magdassi, Shlomo Tok, Alfred Iing Yoong School of Materials Science and Engineering Singapore-HUJ Alliance for Research and Enterprise Campus for Research Excellence And Technological Enterprise Engineering::Materials Electrochromic Smart Window Near Infrared Heat Modulation In an urbanized city, about a third of total electrical consumption is allocated for indoor lighting and air conditioning system in residential and commercial buildings. The majority of the worldwide energy generation comes from burning of non-renewable fossil fuel which is not sustainable in the long run. The use of smart windows technology may catalyze the effort to reduce energy consumption of building and houses. More than 50% of heat entering a building through windows originate from the solar radiation in the near infrared (NIR) region. This candidate smart window material must exhibit dual-band (visible and NIR) modulation that allows selective modulation of NIR heat without affecting visible light transmission. A good electrochromic material in this respect should possess high visible light transmission, high NIR modulation, fast switching between colored and bleached state, and good stability over prolonged usage. In this work, we propose a novel Nd–Mo co-doped SnO2/α-WO3 electrochromic materials (ECs). As compared to the traditional SnO2/α-WO3 ECs, our Nd–Mo co-doped SnO2/α-WO3 ECs exhibits up to 90% visible light transparency (at λ = 600 nm), 62% NIR modulation (at wavelength 1200 nm), high coloration efficiency (~200 cm2 C−1), fast switching time with only 31% electrochromic performance drop (vs 59% of undoped sample) after up to 1000 reversible cyclic test. The enhanced electrochromic performance comes from the presence of Nd–Mo co-dopants that limit the trapping of Li + ion within α-WO3 framework, reduce the extent of crystallization of α-WO3 layer and enhancement of the electronic conductivity by transferring their excess electron to the conduction band of the SnO2. To the best of the authors’ knowledge, the present composition of ECs offers one of the better candidate materials for electrochromic to be used as thermal management layers on smart windows application. National Research Foundation (NRF) This research is supported by grants from the National Research Foundation, Prime Minister’s Office, Singapore under its Campus of Research Excellence and Technological Enterprise (CREATE) Program. 2022-07-13T07:13:11Z 2022-07-13T07:13:11Z 2021 Journal Article Goei, R., Ong, A. J., Tan, J. H., Loke, J. Y., Lua, S., Mandler, D., Magdassi, S. & Tok, A. I. Y. (2021). Novel Nd–Mo co-doped SnO₂/α-WO₃ electrochromic materials (ECs) for enhanced smart window performance. Ceramics International, 47(13), 18433-18442. https://dx.doi.org/10.1016/j.ceramint.2021.03.167 0272-8842 https://hdl.handle.net/10356/160142 10.1016/j.ceramint.2021.03.167 2-s2.0-85103339972 13 47 18433 18442 en Ceramics International © 2021 Elsevier Ltd and Techna Group S.r.l. All rights reserved
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Materials
Electrochromic Smart Window
Near Infrared Heat Modulation
spellingShingle Engineering::Materials
Electrochromic Smart Window
Near Infrared Heat Modulation
Goei, Ronn
Ong, Amanda Jiamin
Tan, Jun Hao
Loke, Jie Yi
Lua, Shun-Kuang
Mandler, Daniel
Magdassi, Shlomo
Tok, Alfred Iing Yoong
Novel Nd–Mo co-doped SnO₂/α-WO₃ electrochromic materials (ECs) for enhanced smart window performance
description In an urbanized city, about a third of total electrical consumption is allocated for indoor lighting and air conditioning system in residential and commercial buildings. The majority of the worldwide energy generation comes from burning of non-renewable fossil fuel which is not sustainable in the long run. The use of smart windows technology may catalyze the effort to reduce energy consumption of building and houses. More than 50% of heat entering a building through windows originate from the solar radiation in the near infrared (NIR) region. This candidate smart window material must exhibit dual-band (visible and NIR) modulation that allows selective modulation of NIR heat without affecting visible light transmission. A good electrochromic material in this respect should possess high visible light transmission, high NIR modulation, fast switching between colored and bleached state, and good stability over prolonged usage. In this work, we propose a novel Nd–Mo co-doped SnO2/α-WO3 electrochromic materials (ECs). As compared to the traditional SnO2/α-WO3 ECs, our Nd–Mo co-doped SnO2/α-WO3 ECs exhibits up to 90% visible light transparency (at λ = 600 nm), 62% NIR modulation (at wavelength 1200 nm), high coloration efficiency (~200 cm2 C−1), fast switching time with only 31% electrochromic performance drop (vs 59% of undoped sample) after up to 1000 reversible cyclic test. The enhanced electrochromic performance comes from the presence of Nd–Mo co-dopants that limit the trapping of Li + ion within α-WO3 framework, reduce the extent of crystallization of α-WO3 layer and enhancement of the electronic conductivity by transferring their excess electron to the conduction band of the SnO2. To the best of the authors’ knowledge, the present composition of ECs offers one of the better candidate materials for electrochromic to be used as thermal management layers on smart windows application.
author2 School of Materials Science and Engineering
author_facet School of Materials Science and Engineering
Goei, Ronn
Ong, Amanda Jiamin
Tan, Jun Hao
Loke, Jie Yi
Lua, Shun-Kuang
Mandler, Daniel
Magdassi, Shlomo
Tok, Alfred Iing Yoong
format Article
author Goei, Ronn
Ong, Amanda Jiamin
Tan, Jun Hao
Loke, Jie Yi
Lua, Shun-Kuang
Mandler, Daniel
Magdassi, Shlomo
Tok, Alfred Iing Yoong
author_sort Goei, Ronn
title Novel Nd–Mo co-doped SnO₂/α-WO₃ electrochromic materials (ECs) for enhanced smart window performance
title_short Novel Nd–Mo co-doped SnO₂/α-WO₃ electrochromic materials (ECs) for enhanced smart window performance
title_full Novel Nd–Mo co-doped SnO₂/α-WO₃ electrochromic materials (ECs) for enhanced smart window performance
title_fullStr Novel Nd–Mo co-doped SnO₂/α-WO₃ electrochromic materials (ECs) for enhanced smart window performance
title_full_unstemmed Novel Nd–Mo co-doped SnO₂/α-WO₃ electrochromic materials (ECs) for enhanced smart window performance
title_sort novel nd–mo co-doped sno₂/α-wo₃ electrochromic materials (ecs) for enhanced smart window performance
publishDate 2022
url https://hdl.handle.net/10356/160142
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