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Porous SnO(2)/C Nanofiber Anodes and LiFePO(4)/C Nanofiber Cathodes with a Wrinkle Structure for Stretchable Lithium Polymer Batteries with High Electrochemical Performance

Stretchable lithium batteries have attracted considerable attention as components in future electronic devices, such as wearable devices, sensors, and body‐attachment healthcare devices. However, several challenges still exist in the bid to obtain excellent electrochemical properties for stretchable...

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Autores principales: Kwon, O. Hyeon, Oh, Jang Hyeok, Gu, Bobae, Jo, Min Su, Oh, Se Hwan, Kang, Yun Chan, Kim, Jae‐Kwang, Jeong, Sang Mun, Cho, Jung Sang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7507473/
https://www.ncbi.nlm.nih.gov/pubmed/32995129
http://dx.doi.org/10.1002/advs.202001358
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author Kwon, O. Hyeon
Oh, Jang Hyeok
Gu, Bobae
Jo, Min Su
Oh, Se Hwan
Kang, Yun Chan
Kim, Jae‐Kwang
Jeong, Sang Mun
Cho, Jung Sang
author_facet Kwon, O. Hyeon
Oh, Jang Hyeok
Gu, Bobae
Jo, Min Su
Oh, Se Hwan
Kang, Yun Chan
Kim, Jae‐Kwang
Jeong, Sang Mun
Cho, Jung Sang
author_sort Kwon, O. Hyeon
collection PubMed
description Stretchable lithium batteries have attracted considerable attention as components in future electronic devices, such as wearable devices, sensors, and body‐attachment healthcare devices. However, several challenges still exist in the bid to obtain excellent electrochemical properties for stretchable batteries. Here, a unique stretchable lithium full‐cell battery is designed using 1D nanofiber active materials, stretchable gel polymer electrolyte, and wrinkle structure electrodes. A SnO(2)/C nanofiber anode and a LiFePO(4)/C nanofiber cathode introduce meso‐ and micropores for lithium‐ion diffusion and electrolyte penetration. The stretchable full‐cell consists of an elastic poly(dimethylsiloxane) (PDMS) wrapping film, SnO(2)/C and LiFePO(4)/C nanofiber electrodes with a wrinkle structure fixed on the PDMS wrapping film by an adhesive polymer, and a gel polymer electrolyte. The specific capacity of the stretchable full‐battery is maintained at 128.3 mAh g(−1) (capacity retention of 92%) even after a 30% strain, as compared with 136.8 mAh g(−1) before strain. The energy densities are 458.8 Wh kg(−1) in the released state and 423.4 Wh kg(−1) in the stretched state (based on the electrode), respectively. The high capacity and stability in the stretched state demonstrate the potential of the stretchable battery to overcome its limitations.
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spelling pubmed-75074732020-09-28 Porous SnO(2)/C Nanofiber Anodes and LiFePO(4)/C Nanofiber Cathodes with a Wrinkle Structure for Stretchable Lithium Polymer Batteries with High Electrochemical Performance Kwon, O. Hyeon Oh, Jang Hyeok Gu, Bobae Jo, Min Su Oh, Se Hwan Kang, Yun Chan Kim, Jae‐Kwang Jeong, Sang Mun Cho, Jung Sang Adv Sci (Weinh) Full Papers Stretchable lithium batteries have attracted considerable attention as components in future electronic devices, such as wearable devices, sensors, and body‐attachment healthcare devices. However, several challenges still exist in the bid to obtain excellent electrochemical properties for stretchable batteries. Here, a unique stretchable lithium full‐cell battery is designed using 1D nanofiber active materials, stretchable gel polymer electrolyte, and wrinkle structure electrodes. A SnO(2)/C nanofiber anode and a LiFePO(4)/C nanofiber cathode introduce meso‐ and micropores for lithium‐ion diffusion and electrolyte penetration. The stretchable full‐cell consists of an elastic poly(dimethylsiloxane) (PDMS) wrapping film, SnO(2)/C and LiFePO(4)/C nanofiber electrodes with a wrinkle structure fixed on the PDMS wrapping film by an adhesive polymer, and a gel polymer electrolyte. The specific capacity of the stretchable full‐battery is maintained at 128.3 mAh g(−1) (capacity retention of 92%) even after a 30% strain, as compared with 136.8 mAh g(−1) before strain. The energy densities are 458.8 Wh kg(−1) in the released state and 423.4 Wh kg(−1) in the stretched state (based on the electrode), respectively. The high capacity and stability in the stretched state demonstrate the potential of the stretchable battery to overcome its limitations. John Wiley and Sons Inc. 2020-07-19 /pmc/articles/PMC7507473/ /pubmed/32995129 http://dx.doi.org/10.1002/advs.202001358 Text en © 2020 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Kwon, O. Hyeon
Oh, Jang Hyeok
Gu, Bobae
Jo, Min Su
Oh, Se Hwan
Kang, Yun Chan
Kim, Jae‐Kwang
Jeong, Sang Mun
Cho, Jung Sang
Porous SnO(2)/C Nanofiber Anodes and LiFePO(4)/C Nanofiber Cathodes with a Wrinkle Structure for Stretchable Lithium Polymer Batteries with High Electrochemical Performance
title Porous SnO(2)/C Nanofiber Anodes and LiFePO(4)/C Nanofiber Cathodes with a Wrinkle Structure for Stretchable Lithium Polymer Batteries with High Electrochemical Performance
title_full Porous SnO(2)/C Nanofiber Anodes and LiFePO(4)/C Nanofiber Cathodes with a Wrinkle Structure for Stretchable Lithium Polymer Batteries with High Electrochemical Performance
title_fullStr Porous SnO(2)/C Nanofiber Anodes and LiFePO(4)/C Nanofiber Cathodes with a Wrinkle Structure for Stretchable Lithium Polymer Batteries with High Electrochemical Performance
title_full_unstemmed Porous SnO(2)/C Nanofiber Anodes and LiFePO(4)/C Nanofiber Cathodes with a Wrinkle Structure for Stretchable Lithium Polymer Batteries with High Electrochemical Performance
title_short Porous SnO(2)/C Nanofiber Anodes and LiFePO(4)/C Nanofiber Cathodes with a Wrinkle Structure for Stretchable Lithium Polymer Batteries with High Electrochemical Performance
title_sort porous sno(2)/c nanofiber anodes and lifepo(4)/c nanofiber cathodes with a wrinkle structure for stretchable lithium polymer batteries with high electrochemical performance
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7507473/
https://www.ncbi.nlm.nih.gov/pubmed/32995129
http://dx.doi.org/10.1002/advs.202001358
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