Horizontally arranged zinc platelet electrodeposits modulated by fluorinated covalent organic framework film for high-rate and durable aqueous zinc ion batteries

Rechargeable aqueous zinc-ion batteries are promising but the zinc anode suffers from dendrite growth and electrolyte corrosion. Here, the authors develop a fluorinated covalent organic framework film as a protective layer for aqueous zinc anode battery.

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Autores principales: Zedong Zhao, Rong Wang, Chengxin Peng, Wuji Chen, Tianqi Wu, Bo Hu, Weijun Weng, Ying Yao, Jiaxi Zeng, Zhihong Chen, Peiying Liu, Yicheng Liu, Guisheng Li, Jia Guo, Hongbin Lu, Zaiping Guo
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/cf663e094cfe4b0ab240d88493ae3bf5
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spelling oai:doaj.org-article:cf663e094cfe4b0ab240d88493ae3bf52021-11-21T12:34:53ZHorizontally arranged zinc platelet electrodeposits modulated by fluorinated covalent organic framework film for high-rate and durable aqueous zinc ion batteries10.1038/s41467-021-26947-92041-1723https://doaj.org/article/cf663e094cfe4b0ab240d88493ae3bf52021-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-26947-9https://doaj.org/toc/2041-1723Rechargeable aqueous zinc-ion batteries are promising but the zinc anode suffers from dendrite growth and electrolyte corrosion. Here, the authors develop a fluorinated covalent organic framework film as a protective layer for aqueous zinc anode battery.Zedong ZhaoRong WangChengxin PengWuji ChenTianqi WuBo HuWeijun WengYing YaoJiaxi ZengZhihong ChenPeiying LiuYicheng LiuGuisheng LiJia GuoHongbin LuZaiping GuoNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-14 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Zedong Zhao
Rong Wang
Chengxin Peng
Wuji Chen
Tianqi Wu
Bo Hu
Weijun Weng
Ying Yao
Jiaxi Zeng
Zhihong Chen
Peiying Liu
Yicheng Liu
Guisheng Li
Jia Guo
Hongbin Lu
Zaiping Guo
Horizontally arranged zinc platelet electrodeposits modulated by fluorinated covalent organic framework film for high-rate and durable aqueous zinc ion batteries
description Rechargeable aqueous zinc-ion batteries are promising but the zinc anode suffers from dendrite growth and electrolyte corrosion. Here, the authors develop a fluorinated covalent organic framework film as a protective layer for aqueous zinc anode battery.
format article
author Zedong Zhao
Rong Wang
Chengxin Peng
Wuji Chen
Tianqi Wu
Bo Hu
Weijun Weng
Ying Yao
Jiaxi Zeng
Zhihong Chen
Peiying Liu
Yicheng Liu
Guisheng Li
Jia Guo
Hongbin Lu
Zaiping Guo
author_facet Zedong Zhao
Rong Wang
Chengxin Peng
Wuji Chen
Tianqi Wu
Bo Hu
Weijun Weng
Ying Yao
Jiaxi Zeng
Zhihong Chen
Peiying Liu
Yicheng Liu
Guisheng Li
Jia Guo
Hongbin Lu
Zaiping Guo
author_sort Zedong Zhao
title Horizontally arranged zinc platelet electrodeposits modulated by fluorinated covalent organic framework film for high-rate and durable aqueous zinc ion batteries
title_short Horizontally arranged zinc platelet electrodeposits modulated by fluorinated covalent organic framework film for high-rate and durable aqueous zinc ion batteries
title_full Horizontally arranged zinc platelet electrodeposits modulated by fluorinated covalent organic framework film for high-rate and durable aqueous zinc ion batteries
title_fullStr Horizontally arranged zinc platelet electrodeposits modulated by fluorinated covalent organic framework film for high-rate and durable aqueous zinc ion batteries
title_full_unstemmed Horizontally arranged zinc platelet electrodeposits modulated by fluorinated covalent organic framework film for high-rate and durable aqueous zinc ion batteries
title_sort horizontally arranged zinc platelet electrodeposits modulated by fluorinated covalent organic framework film for high-rate and durable aqueous zinc ion batteries
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/cf663e094cfe4b0ab240d88493ae3bf5
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