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A PVA/LiCl/PEO interpenetrating composite electrolyte with a three-dimensional dual-network for all-solid-state flexible aluminum–air batteries

Aluminum–air batteries are promising electronic power sources because of their low cost and high energy density. However, traditional aluminum–air batteries are greatly restricted from being used in the field of flexible electronics due to the rigid battery structure, and the irreversible corrosion...

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Autores principales: Chen, Li, Li, Boqiao, Zhu, Liangliang, Deng, Xiaobin, Sun, Xueyan, Liu, Yilun, Zhang, Chen, Zhao, Wei, Chen, Xi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9044495/
https://www.ncbi.nlm.nih.gov/pubmed/35492453
http://dx.doi.org/10.1039/d1ra07180g
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author Chen, Li
Li, Boqiao
Zhu, Liangliang
Deng, Xiaobin
Sun, Xueyan
Liu, Yilun
Zhang, Chen
Zhao, Wei
Chen, Xi
author_facet Chen, Li
Li, Boqiao
Zhu, Liangliang
Deng, Xiaobin
Sun, Xueyan
Liu, Yilun
Zhang, Chen
Zhao, Wei
Chen, Xi
author_sort Chen, Li
collection PubMed
description Aluminum–air batteries are promising electronic power sources because of their low cost and high energy density. However, traditional aluminum–air batteries are greatly restricted from being used in the field of flexible electronics due to the rigid battery structure, and the irreversible corrosion of the anode by the alkaline electrolyte, which greatly reduces the battery life. To address these issues, a three-dimensional dual-network interpenetrating structure PVA/LiCl/PEO composite gel polymer electrolyte (GPE) is proposed. The gel polymer electrolyte exhibits good flexibility and high ionic conductivity (σ = 6.51 × 10(−3) S cm(−1)) at room temperature. Meanwhile, benefiting from the high-performance GPE, an assembled aluminum–air coin cell shows a highest discharge voltage of 0.73 V and a peak power density (P(max)) of 3.31 mW cm(−2). The Al specific capacity is as high as 735.2 mA h g(−1). A flexible aluminum–air battery assembled using the GPE also performed stably in flat, bent, and folded states. This paper provides a cost-effective and feasible way to fabricate a composite gel polymer electrolyte with high performance for use in flexible aluminum–air batteries, suitable for a variety of energy-related devices.
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spelling pubmed-90444952022-04-28 A PVA/LiCl/PEO interpenetrating composite electrolyte with a three-dimensional dual-network for all-solid-state flexible aluminum–air batteries Chen, Li Li, Boqiao Zhu, Liangliang Deng, Xiaobin Sun, Xueyan Liu, Yilun Zhang, Chen Zhao, Wei Chen, Xi RSC Adv Chemistry Aluminum–air batteries are promising electronic power sources because of their low cost and high energy density. However, traditional aluminum–air batteries are greatly restricted from being used in the field of flexible electronics due to the rigid battery structure, and the irreversible corrosion of the anode by the alkaline electrolyte, which greatly reduces the battery life. To address these issues, a three-dimensional dual-network interpenetrating structure PVA/LiCl/PEO composite gel polymer electrolyte (GPE) is proposed. The gel polymer electrolyte exhibits good flexibility and high ionic conductivity (σ = 6.51 × 10(−3) S cm(−1)) at room temperature. Meanwhile, benefiting from the high-performance GPE, an assembled aluminum–air coin cell shows a highest discharge voltage of 0.73 V and a peak power density (P(max)) of 3.31 mW cm(−2). The Al specific capacity is as high as 735.2 mA h g(−1). A flexible aluminum–air battery assembled using the GPE also performed stably in flat, bent, and folded states. This paper provides a cost-effective and feasible way to fabricate a composite gel polymer electrolyte with high performance for use in flexible aluminum–air batteries, suitable for a variety of energy-related devices. The Royal Society of Chemistry 2021-12-13 /pmc/articles/PMC9044495/ /pubmed/35492453 http://dx.doi.org/10.1039/d1ra07180g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Chen, Li
Li, Boqiao
Zhu, Liangliang
Deng, Xiaobin
Sun, Xueyan
Liu, Yilun
Zhang, Chen
Zhao, Wei
Chen, Xi
A PVA/LiCl/PEO interpenetrating composite electrolyte with a three-dimensional dual-network for all-solid-state flexible aluminum–air batteries
title A PVA/LiCl/PEO interpenetrating composite electrolyte with a three-dimensional dual-network for all-solid-state flexible aluminum–air batteries
title_full A PVA/LiCl/PEO interpenetrating composite electrolyte with a three-dimensional dual-network for all-solid-state flexible aluminum–air batteries
title_fullStr A PVA/LiCl/PEO interpenetrating composite electrolyte with a three-dimensional dual-network for all-solid-state flexible aluminum–air batteries
title_full_unstemmed A PVA/LiCl/PEO interpenetrating composite electrolyte with a three-dimensional dual-network for all-solid-state flexible aluminum–air batteries
title_short A PVA/LiCl/PEO interpenetrating composite electrolyte with a three-dimensional dual-network for all-solid-state flexible aluminum–air batteries
title_sort pva/licl/peo interpenetrating composite electrolyte with a three-dimensional dual-network for all-solid-state flexible aluminum–air batteries
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9044495/
https://www.ncbi.nlm.nih.gov/pubmed/35492453
http://dx.doi.org/10.1039/d1ra07180g
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