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Improving the Lifetime of CsPbBr(3) Perovskite in Water Using Self-Healing and Transparent Elastic Polymer Matrix

This study developed a simple and efficient strategy to stabilize inorganic halide perovskite CsPbX(3) at high relative humidity by embedding it into the matrix with elastic and self-healing features. The polymer matrix has a naturally hydrophobic characteristic of n-butyl acrylate segment (n-BA) an...

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Autores principales: Laysandra, Livy, Fan, Yong Jie, Adena, Cecilia, Lee, Yen-Ting, Au-Duong, Ai-Nhan, Chen, Liang-Yih, Chiu, Yu-Cheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7573164/
https://www.ncbi.nlm.nih.gov/pubmed/33134258
http://dx.doi.org/10.3389/fchem.2020.00766
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author Laysandra, Livy
Fan, Yong Jie
Adena, Cecilia
Lee, Yen-Ting
Au-Duong, Ai-Nhan
Chen, Liang-Yih
Chiu, Yu-Cheng
author_facet Laysandra, Livy
Fan, Yong Jie
Adena, Cecilia
Lee, Yen-Ting
Au-Duong, Ai-Nhan
Chen, Liang-Yih
Chiu, Yu-Cheng
author_sort Laysandra, Livy
collection PubMed
description This study developed a simple and efficient strategy to stabilize inorganic halide perovskite CsPbX(3) at high relative humidity by embedding it into the matrix with elastic and self-healing features. The polymer matrix has a naturally hydrophobic characteristic of n-butyl acrylate segment (n-BA) and cross-linkable and healable moiety from N-(hydroxymethyl) acrylamide segment (NMA). It was chosen due to the provisions of both a surrounding protective layer for inorganic perovskite and elastic, as well as healing ability to the whole organic-inorganic composite. This fabricated CsPbBr(3)/PBA-co-PNMA composite was demonstrated to stably persist against the suffering from hydrolysis of perovskites when exposed to a high moisture environment. The PL intensity of the composite after crosslinking was found to be relatively stable after 30 days of exposure to air. Upon water immersion, the PL intensity of composite only showed a decrease of 32% after the first 6 h, then remained stable for 6 h afterward. Furthermore, this fabricated composite was not only flexible and relatively transparent but also exhibited excellent self-healing capability in ambient conditions (T = 25°C), in which the self-healing efficiency after 24 h was above 40%. The tensile strength and stretching ability of 5 wt% perovskite content in the random copolymer were observed to be 3.8 MPa and 553.5% respectively. Overall, flexible and self-healing properties combining with high luminescence characteristics are very promising materials for next-generation soft optical devices.
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spelling pubmed-75731642020-10-30 Improving the Lifetime of CsPbBr(3) Perovskite in Water Using Self-Healing and Transparent Elastic Polymer Matrix Laysandra, Livy Fan, Yong Jie Adena, Cecilia Lee, Yen-Ting Au-Duong, Ai-Nhan Chen, Liang-Yih Chiu, Yu-Cheng Front Chem Chemistry This study developed a simple and efficient strategy to stabilize inorganic halide perovskite CsPbX(3) at high relative humidity by embedding it into the matrix with elastic and self-healing features. The polymer matrix has a naturally hydrophobic characteristic of n-butyl acrylate segment (n-BA) and cross-linkable and healable moiety from N-(hydroxymethyl) acrylamide segment (NMA). It was chosen due to the provisions of both a surrounding protective layer for inorganic perovskite and elastic, as well as healing ability to the whole organic-inorganic composite. This fabricated CsPbBr(3)/PBA-co-PNMA composite was demonstrated to stably persist against the suffering from hydrolysis of perovskites when exposed to a high moisture environment. The PL intensity of the composite after crosslinking was found to be relatively stable after 30 days of exposure to air. Upon water immersion, the PL intensity of composite only showed a decrease of 32% after the first 6 h, then remained stable for 6 h afterward. Furthermore, this fabricated composite was not only flexible and relatively transparent but also exhibited excellent self-healing capability in ambient conditions (T = 25°C), in which the self-healing efficiency after 24 h was above 40%. The tensile strength and stretching ability of 5 wt% perovskite content in the random copolymer were observed to be 3.8 MPa and 553.5% respectively. Overall, flexible and self-healing properties combining with high luminescence characteristics are very promising materials for next-generation soft optical devices. Frontiers Media S.A. 2020-10-06 /pmc/articles/PMC7573164/ /pubmed/33134258 http://dx.doi.org/10.3389/fchem.2020.00766 Text en Copyright © 2020 Laysandra, Fan, Adena, Lee, Au-Duong, Chen and Chiu. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Laysandra, Livy
Fan, Yong Jie
Adena, Cecilia
Lee, Yen-Ting
Au-Duong, Ai-Nhan
Chen, Liang-Yih
Chiu, Yu-Cheng
Improving the Lifetime of CsPbBr(3) Perovskite in Water Using Self-Healing and Transparent Elastic Polymer Matrix
title Improving the Lifetime of CsPbBr(3) Perovskite in Water Using Self-Healing and Transparent Elastic Polymer Matrix
title_full Improving the Lifetime of CsPbBr(3) Perovskite in Water Using Self-Healing and Transparent Elastic Polymer Matrix
title_fullStr Improving the Lifetime of CsPbBr(3) Perovskite in Water Using Self-Healing and Transparent Elastic Polymer Matrix
title_full_unstemmed Improving the Lifetime of CsPbBr(3) Perovskite in Water Using Self-Healing and Transparent Elastic Polymer Matrix
title_short Improving the Lifetime of CsPbBr(3) Perovskite in Water Using Self-Healing and Transparent Elastic Polymer Matrix
title_sort improving the lifetime of cspbbr(3) perovskite in water using self-healing and transparent elastic polymer matrix
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7573164/
https://www.ncbi.nlm.nih.gov/pubmed/33134258
http://dx.doi.org/10.3389/fchem.2020.00766
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