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Vertically assembled nanosheet networks for high-density thick battery electrodes
As one of the prevailing energy storage systems, lithium-ion batteries (LIBs) have become an essential pillar in electric vehicles (EVs) during the past decade, contributing significantly to a carbon-neutral future. However, the complete transition to electric vehicles requires LIBs with yet higher...
Autores principales: | , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
National Academy of Sciences
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9546623/ https://www.ncbi.nlm.nih.gov/pubmed/36161896 http://dx.doi.org/10.1073/pnas.2212777119 |
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author | Ju, Zhengyu King, Steven T. Xu, Xiao Zhang, Xiao Raigama, Kasun U. Takeuchi, Kenneth J. Marschilok, Amy C. Wang, Lei Takeuchi, Esther S. Yu, Guihua |
author_facet | Ju, Zhengyu King, Steven T. Xu, Xiao Zhang, Xiao Raigama, Kasun U. Takeuchi, Kenneth J. Marschilok, Amy C. Wang, Lei Takeuchi, Esther S. Yu, Guihua |
author_sort | Ju, Zhengyu |
collection | PubMed |
description | As one of the prevailing energy storage systems, lithium-ion batteries (LIBs) have become an essential pillar in electric vehicles (EVs) during the past decade, contributing significantly to a carbon-neutral future. However, the complete transition to electric vehicles requires LIBs with yet higher energy and power densities. Here, we propose an effective methodology via controlled nanosheet self-assembly to prepare low-tortuosity yet high-density and high-toughness thick electrodes. By introducing a delicate densification in a three-dimensionally interconnected nanosheet network to maintain its vertical architecture, facile electron and ion transports are enabled despite their high packing density. This dense and thick electrode is capable of delivering a high volumetric capacity >1,600 mAh cm(−3), with an areal capacity up to 32 mAh cm(−2), which is among the best reported in the literature. The high-performance electrodes with superior mechanical and electrochemical properties demonstrated in this work provide a potentially universal methodology in designing advanced battery electrodes with versatile anisotropic properties. |
format | Online Article Text |
id | pubmed-9546623 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | National Academy of Sciences |
record_format | MEDLINE/PubMed |
spelling | pubmed-95466232023-03-26 Vertically assembled nanosheet networks for high-density thick battery electrodes Ju, Zhengyu King, Steven T. Xu, Xiao Zhang, Xiao Raigama, Kasun U. Takeuchi, Kenneth J. Marschilok, Amy C. Wang, Lei Takeuchi, Esther S. Yu, Guihua Proc Natl Acad Sci U S A Physical Sciences As one of the prevailing energy storage systems, lithium-ion batteries (LIBs) have become an essential pillar in electric vehicles (EVs) during the past decade, contributing significantly to a carbon-neutral future. However, the complete transition to electric vehicles requires LIBs with yet higher energy and power densities. Here, we propose an effective methodology via controlled nanosheet self-assembly to prepare low-tortuosity yet high-density and high-toughness thick electrodes. By introducing a delicate densification in a three-dimensionally interconnected nanosheet network to maintain its vertical architecture, facile electron and ion transports are enabled despite their high packing density. This dense and thick electrode is capable of delivering a high volumetric capacity >1,600 mAh cm(−3), with an areal capacity up to 32 mAh cm(−2), which is among the best reported in the literature. The high-performance electrodes with superior mechanical and electrochemical properties demonstrated in this work provide a potentially universal methodology in designing advanced battery electrodes with versatile anisotropic properties. National Academy of Sciences 2022-09-26 2022-10-04 /pmc/articles/PMC9546623/ /pubmed/36161896 http://dx.doi.org/10.1073/pnas.2212777119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) . |
spellingShingle | Physical Sciences Ju, Zhengyu King, Steven T. Xu, Xiao Zhang, Xiao Raigama, Kasun U. Takeuchi, Kenneth J. Marschilok, Amy C. Wang, Lei Takeuchi, Esther S. Yu, Guihua Vertically assembled nanosheet networks for high-density thick battery electrodes |
title | Vertically assembled nanosheet networks for high-density thick battery electrodes |
title_full | Vertically assembled nanosheet networks for high-density thick battery electrodes |
title_fullStr | Vertically assembled nanosheet networks for high-density thick battery electrodes |
title_full_unstemmed | Vertically assembled nanosheet networks for high-density thick battery electrodes |
title_short | Vertically assembled nanosheet networks for high-density thick battery electrodes |
title_sort | vertically assembled nanosheet networks for high-density thick battery electrodes |
topic | Physical Sciences |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9546623/ https://www.ncbi.nlm.nih.gov/pubmed/36161896 http://dx.doi.org/10.1073/pnas.2212777119 |
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