A fluoropolymer bifunctional solid membrane interface for improving the discharge duration in aqueous Al-air batteries

Herein, a fluoropolymer bifunctional solid membrane interface (SMI) for an aqueous Al-air battery is proposed, which inhibits anodic self-corrosion, while concurrently reducing the accumulation of undesirable by-products. A battery using the SMI exhibits a remarkable anticorrosion efficiency of 81.3...

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Veröffentlicht in:Chemical communications (Cambridge, England) England), 2023-09, Vol.59 (74), p.11121-11124
Hauptverfasser: Wei, Manhui, Wang, Keliang, Pham, Thi Ha My, Zhang, Meixia, Zhong, Daiyuan, Wang, Hengwei, Zhong, Liping, Liu, Dongxin, Pei, Pucheng, Züttel, Andreas
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container_end_page 11124
container_issue 74
container_start_page 11121
container_title Chemical communications (Cambridge, England)
container_volume 59
creator Wei, Manhui
Wang, Keliang
Pham, Thi Ha My
Zhang, Meixia
Zhong, Daiyuan
Wang, Hengwei
Zhong, Liping
Liu, Dongxin
Pei, Pucheng
Züttel, Andreas
description Herein, a fluoropolymer bifunctional solid membrane interface (SMI) for an aqueous Al-air battery is proposed, which inhibits anodic self-corrosion, while concurrently reducing the accumulation of undesirable by-products. A battery using the SMI exhibits a remarkable anticorrosion efficiency of 81.31% and achieves an astonishing battery lifetime improvement rate of 184.37% under the condition of 5 min intermittent discharge. A fluoropolymer bifunctional solid membrane interface (PTFE SMI) effectively inhibits anodic self-corrosion, while simultaneously reducing the accumulation of by-products, thereby facilitating the commercialization of aqueous Al-air batteries.
doi_str_mv 10.1039/d3cc02671j
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source Royal Society Of Chemistry Journals 2008-; Alma/SFX Local Collection
subjects Corrosion prevention
Corrosion products
Discharge
Fluoropolymers
Membranes
Metal air batteries
title A fluoropolymer bifunctional solid membrane interface for improving the discharge duration in aqueous Al-air batteries
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