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A Facile Pre-Lithiated Strategy towards High-Performance Li(2)Se-LiTiO(2) Composite Cathode for Li-Se Batteries

Conventional lithium-ion batteries with a limited energy density are unable to assume the responsibility of energy-structure innovation. Lithium-selenium (Li-Se) batteries are considered to be the next generation energy storage devices since Se cathodes have high volumetric energy density. However,...

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Autores principales: Xia, Yang, Fang, Zheng, Lu, Chengwei, Xiao, Zhen, He, Xinping, Gan, Yongping, Huang, Hui, Wang, Guoguang, Zhang, Wenkui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8912804/
https://www.ncbi.nlm.nih.gov/pubmed/35269302
http://dx.doi.org/10.3390/nano12050815
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author Xia, Yang
Fang, Zheng
Lu, Chengwei
Xiao, Zhen
He, Xinping
Gan, Yongping
Huang, Hui
Wang, Guoguang
Zhang, Wenkui
author_facet Xia, Yang
Fang, Zheng
Lu, Chengwei
Xiao, Zhen
He, Xinping
Gan, Yongping
Huang, Hui
Wang, Guoguang
Zhang, Wenkui
author_sort Xia, Yang
collection PubMed
description Conventional lithium-ion batteries with a limited energy density are unable to assume the responsibility of energy-structure innovation. Lithium-selenium (Li-Se) batteries are considered to be the next generation energy storage devices since Se cathodes have high volumetric energy density. However, the shuttle effect and volume expansion of Se cathodes severely restrict the commercialization of Li-Se batteries. Herein, a facile solid-phase synthesis method is successfully developed to fabricate novel pre-lithiated Li(2)Se-LiTiO(2) composite cathode materials. Impressively, the rationally designed Li(2)Se-LiTiO(2) composites demonstrate significantly enhanced electrochemical performance. On the one hand, the overpotential of Li(2)Se-LiTiO(2) cathode extremely decreases from 2.93 V to 2.15 V. On the other hand, the specific discharge capacity of Li(2)Se-LiTiO(2) cathode is two times higher than that of Li(2)Se. Such enhancement is mainly accounted to the emergence of oxygen vacancies during the conversion of Ti(4+) into Ti(3+), as well as the strong chemisorption of LiTiO(2) particles for polyselenides. This facile pre-lithiated strategy underscores the potential importance of embedding Li into Se for boosting electrochemical performance of Se cathode, which is highly expected for high-performance Li-Se batteries to cover a wide range of practical applications.
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spelling pubmed-89128042022-03-11 A Facile Pre-Lithiated Strategy towards High-Performance Li(2)Se-LiTiO(2) Composite Cathode for Li-Se Batteries Xia, Yang Fang, Zheng Lu, Chengwei Xiao, Zhen He, Xinping Gan, Yongping Huang, Hui Wang, Guoguang Zhang, Wenkui Nanomaterials (Basel) Article Conventional lithium-ion batteries with a limited energy density are unable to assume the responsibility of energy-structure innovation. Lithium-selenium (Li-Se) batteries are considered to be the next generation energy storage devices since Se cathodes have high volumetric energy density. However, the shuttle effect and volume expansion of Se cathodes severely restrict the commercialization of Li-Se batteries. Herein, a facile solid-phase synthesis method is successfully developed to fabricate novel pre-lithiated Li(2)Se-LiTiO(2) composite cathode materials. Impressively, the rationally designed Li(2)Se-LiTiO(2) composites demonstrate significantly enhanced electrochemical performance. On the one hand, the overpotential of Li(2)Se-LiTiO(2) cathode extremely decreases from 2.93 V to 2.15 V. On the other hand, the specific discharge capacity of Li(2)Se-LiTiO(2) cathode is two times higher than that of Li(2)Se. Such enhancement is mainly accounted to the emergence of oxygen vacancies during the conversion of Ti(4+) into Ti(3+), as well as the strong chemisorption of LiTiO(2) particles for polyselenides. This facile pre-lithiated strategy underscores the potential importance of embedding Li into Se for boosting electrochemical performance of Se cathode, which is highly expected for high-performance Li-Se batteries to cover a wide range of practical applications. MDPI 2022-02-28 /pmc/articles/PMC8912804/ /pubmed/35269302 http://dx.doi.org/10.3390/nano12050815 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xia, Yang
Fang, Zheng
Lu, Chengwei
Xiao, Zhen
He, Xinping
Gan, Yongping
Huang, Hui
Wang, Guoguang
Zhang, Wenkui
A Facile Pre-Lithiated Strategy towards High-Performance Li(2)Se-LiTiO(2) Composite Cathode for Li-Se Batteries
title A Facile Pre-Lithiated Strategy towards High-Performance Li(2)Se-LiTiO(2) Composite Cathode for Li-Se Batteries
title_full A Facile Pre-Lithiated Strategy towards High-Performance Li(2)Se-LiTiO(2) Composite Cathode for Li-Se Batteries
title_fullStr A Facile Pre-Lithiated Strategy towards High-Performance Li(2)Se-LiTiO(2) Composite Cathode for Li-Se Batteries
title_full_unstemmed A Facile Pre-Lithiated Strategy towards High-Performance Li(2)Se-LiTiO(2) Composite Cathode for Li-Se Batteries
title_short A Facile Pre-Lithiated Strategy towards High-Performance Li(2)Se-LiTiO(2) Composite Cathode for Li-Se Batteries
title_sort facile pre-lithiated strategy towards high-performance li(2)se-litio(2) composite cathode for li-se batteries
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8912804/
https://www.ncbi.nlm.nih.gov/pubmed/35269302
http://dx.doi.org/10.3390/nano12050815
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