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Composite polymer electrolytes with ionic liquid grafted-Laponite for dendrite-free all-solid-state lithium metal batteries

Composite polymer electrolytes (CPEs) with high ionic conductivity and favorable electrolyte/electrode interfacial compatibility are promising alternatives to liquid electrolytes. However, severe parasitic reactions in the Li/electrolyte interface and the air-unstable inorganic fillers have hindered...

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Autores principales: Jin, Biyu, Wang, Dongyun, He, Yuan, Mao, Jianjiang, Kang, Yunqing, Wan, Chao, Xia, Wei, Kim, Jeonghun, Eguchi, Miharu, Yamauchi, Yusuke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10370573/
https://www.ncbi.nlm.nih.gov/pubmed/37502332
http://dx.doi.org/10.1039/d3sc01647a
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author Jin, Biyu
Wang, Dongyun
He, Yuan
Mao, Jianjiang
Kang, Yunqing
Wan, Chao
Xia, Wei
Kim, Jeonghun
Eguchi, Miharu
Yamauchi, Yusuke
author_facet Jin, Biyu
Wang, Dongyun
He, Yuan
Mao, Jianjiang
Kang, Yunqing
Wan, Chao
Xia, Wei
Kim, Jeonghun
Eguchi, Miharu
Yamauchi, Yusuke
author_sort Jin, Biyu
collection PubMed
description Composite polymer electrolytes (CPEs) with high ionic conductivity and favorable electrolyte/electrode interfacial compatibility are promising alternatives to liquid electrolytes. However, severe parasitic reactions in the Li/electrolyte interface and the air-unstable inorganic fillers have hindered their industrial applications. Herein, surface-edge opposite charged Laponite (LAP) multilayer particles with high air stability were grafted with imidazole ionic liquid (IL-TFSI) to enhance the thermal, mechanical, and electrochemical performances of polyethylene oxide (PEO)-based CPEs. The electrostatic repulsion between multilayers of LAP-IL-TFSI enables them to be easily penetrated by PEO segments, resulting in a pronounced amorphous region in the PEO matrix. Therefore, the CPE-0.2LAP-IL-TFSI exhibits a high ionic conductivity of 1.5 × 10(−3) S cm(−1) and a high lithium-ion transference number of 0.53. Moreover, LAP-IL-TFSI ameliorates the chemistry of the solid electrolyte interphase, significantly suppressing the growth of lithium dendrites and extending the cycling life of symmetric Li cells to over 1000 h. As a result, the LiFePO(4)||CPE-0.2LAP-IL-TFSI||Li cell delivers an outstanding capacity retention of 80% after 500 cycles at 2C at 60 °C. CPE-LAP-IL-TFSI also shows good compatibility with high-voltage LiNi(0.8)Co(0.1)Mn(0.1)O(2) cathodes.
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spelling pubmed-103705732023-07-27 Composite polymer electrolytes with ionic liquid grafted-Laponite for dendrite-free all-solid-state lithium metal batteries Jin, Biyu Wang, Dongyun He, Yuan Mao, Jianjiang Kang, Yunqing Wan, Chao Xia, Wei Kim, Jeonghun Eguchi, Miharu Yamauchi, Yusuke Chem Sci Chemistry Composite polymer electrolytes (CPEs) with high ionic conductivity and favorable electrolyte/electrode interfacial compatibility are promising alternatives to liquid electrolytes. However, severe parasitic reactions in the Li/electrolyte interface and the air-unstable inorganic fillers have hindered their industrial applications. Herein, surface-edge opposite charged Laponite (LAP) multilayer particles with high air stability were grafted with imidazole ionic liquid (IL-TFSI) to enhance the thermal, mechanical, and electrochemical performances of polyethylene oxide (PEO)-based CPEs. The electrostatic repulsion between multilayers of LAP-IL-TFSI enables them to be easily penetrated by PEO segments, resulting in a pronounced amorphous region in the PEO matrix. Therefore, the CPE-0.2LAP-IL-TFSI exhibits a high ionic conductivity of 1.5 × 10(−3) S cm(−1) and a high lithium-ion transference number of 0.53. Moreover, LAP-IL-TFSI ameliorates the chemistry of the solid electrolyte interphase, significantly suppressing the growth of lithium dendrites and extending the cycling life of symmetric Li cells to over 1000 h. As a result, the LiFePO(4)||CPE-0.2LAP-IL-TFSI||Li cell delivers an outstanding capacity retention of 80% after 500 cycles at 2C at 60 °C. CPE-LAP-IL-TFSI also shows good compatibility with high-voltage LiNi(0.8)Co(0.1)Mn(0.1)O(2) cathodes. The Royal Society of Chemistry 2023-06-21 /pmc/articles/PMC10370573/ /pubmed/37502332 http://dx.doi.org/10.1039/d3sc01647a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Jin, Biyu
Wang, Dongyun
He, Yuan
Mao, Jianjiang
Kang, Yunqing
Wan, Chao
Xia, Wei
Kim, Jeonghun
Eguchi, Miharu
Yamauchi, Yusuke
Composite polymer electrolytes with ionic liquid grafted-Laponite for dendrite-free all-solid-state lithium metal batteries
title Composite polymer electrolytes with ionic liquid grafted-Laponite for dendrite-free all-solid-state lithium metal batteries
title_full Composite polymer electrolytes with ionic liquid grafted-Laponite for dendrite-free all-solid-state lithium metal batteries
title_fullStr Composite polymer electrolytes with ionic liquid grafted-Laponite for dendrite-free all-solid-state lithium metal batteries
title_full_unstemmed Composite polymer electrolytes with ionic liquid grafted-Laponite for dendrite-free all-solid-state lithium metal batteries
title_short Composite polymer electrolytes with ionic liquid grafted-Laponite for dendrite-free all-solid-state lithium metal batteries
title_sort composite polymer electrolytes with ionic liquid grafted-laponite for dendrite-free all-solid-state lithium metal batteries
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10370573/
https://www.ncbi.nlm.nih.gov/pubmed/37502332
http://dx.doi.org/10.1039/d3sc01647a
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