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Enhanced Structural Stability and Electrochemical Performance of LiNi(0.6)Co(0.2)Mn(0.2)O(2) Cathode Materials by Ga Doping

Structural instability during cycling is an important factor affecting the electrochemical performance of nickel-rich ternary cathode materials for Li-ion batteries. In this work, enhanced structural stability and electrochemical performance of LiNi(0.6)Co(0.2)Mn(0.2)O(2) cathode materials are achie...

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Detalles Bibliográficos
Autores principales: Liu, Zhibei, Li, Jiangang, Zhu, Meijie, Wang, Li, Kang, Yuqiong, Dang, Zhaohan, Yan, Jiasen, He, Xiangming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8067597/
https://www.ncbi.nlm.nih.gov/pubmed/33916961
http://dx.doi.org/10.3390/ma14081816
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author Liu, Zhibei
Li, Jiangang
Zhu, Meijie
Wang, Li
Kang, Yuqiong
Dang, Zhaohan
Yan, Jiasen
He, Xiangming
author_facet Liu, Zhibei
Li, Jiangang
Zhu, Meijie
Wang, Li
Kang, Yuqiong
Dang, Zhaohan
Yan, Jiasen
He, Xiangming
author_sort Liu, Zhibei
collection PubMed
description Structural instability during cycling is an important factor affecting the electrochemical performance of nickel-rich ternary cathode materials for Li-ion batteries. In this work, enhanced structural stability and electrochemical performance of LiNi(0.6)Co(0.2)Mn(0.2)O(2) cathode materials are achieved by Ga doping. Compared with the pristine electrode, Li[Ni(0.6)Co(0.2)Mn(0.2)](0.98)Ga(0.02)O(2) electrode exhibits remarkably improved electrochemical performance and thermal safety. At 0.5C rate, the discharge capacity increases from 169.3 mAh g(−1) to 177 mAh g(−1), and the capacity retention also rises from 82.8% to 89.8% after 50 cycles. In the charged state of 4.3 V, its exothermic temperature increases from 245.13 °C to more than 271.24 °C, and the total exothermic heat decreases from 561.7 to 225.6 J·g(−1). Both AC impedance spectroscopy and in situ XRD analysis confirmed that Ga doping can improve the stability of the electrode/electrolyte interface structure and bulk structure during cycling, which helps to improve the electrochemical performance of LiNi(0.6)Co(0.2)Mn(0.2)O(2) cathode material.
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spelling pubmed-80675972021-04-25 Enhanced Structural Stability and Electrochemical Performance of LiNi(0.6)Co(0.2)Mn(0.2)O(2) Cathode Materials by Ga Doping Liu, Zhibei Li, Jiangang Zhu, Meijie Wang, Li Kang, Yuqiong Dang, Zhaohan Yan, Jiasen He, Xiangming Materials (Basel) Article Structural instability during cycling is an important factor affecting the electrochemical performance of nickel-rich ternary cathode materials for Li-ion batteries. In this work, enhanced structural stability and electrochemical performance of LiNi(0.6)Co(0.2)Mn(0.2)O(2) cathode materials are achieved by Ga doping. Compared with the pristine electrode, Li[Ni(0.6)Co(0.2)Mn(0.2)](0.98)Ga(0.02)O(2) electrode exhibits remarkably improved electrochemical performance and thermal safety. At 0.5C rate, the discharge capacity increases from 169.3 mAh g(−1) to 177 mAh g(−1), and the capacity retention also rises from 82.8% to 89.8% after 50 cycles. In the charged state of 4.3 V, its exothermic temperature increases from 245.13 °C to more than 271.24 °C, and the total exothermic heat decreases from 561.7 to 225.6 J·g(−1). Both AC impedance spectroscopy and in situ XRD analysis confirmed that Ga doping can improve the stability of the electrode/electrolyte interface structure and bulk structure during cycling, which helps to improve the electrochemical performance of LiNi(0.6)Co(0.2)Mn(0.2)O(2) cathode material. MDPI 2021-04-07 /pmc/articles/PMC8067597/ /pubmed/33916961 http://dx.doi.org/10.3390/ma14081816 Text en © 2021 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
Liu, Zhibei
Li, Jiangang
Zhu, Meijie
Wang, Li
Kang, Yuqiong
Dang, Zhaohan
Yan, Jiasen
He, Xiangming
Enhanced Structural Stability and Electrochemical Performance of LiNi(0.6)Co(0.2)Mn(0.2)O(2) Cathode Materials by Ga Doping
title Enhanced Structural Stability and Electrochemical Performance of LiNi(0.6)Co(0.2)Mn(0.2)O(2) Cathode Materials by Ga Doping
title_full Enhanced Structural Stability and Electrochemical Performance of LiNi(0.6)Co(0.2)Mn(0.2)O(2) Cathode Materials by Ga Doping
title_fullStr Enhanced Structural Stability and Electrochemical Performance of LiNi(0.6)Co(0.2)Mn(0.2)O(2) Cathode Materials by Ga Doping
title_full_unstemmed Enhanced Structural Stability and Electrochemical Performance of LiNi(0.6)Co(0.2)Mn(0.2)O(2) Cathode Materials by Ga Doping
title_short Enhanced Structural Stability and Electrochemical Performance of LiNi(0.6)Co(0.2)Mn(0.2)O(2) Cathode Materials by Ga Doping
title_sort enhanced structural stability and electrochemical performance of lini(0.6)co(0.2)mn(0.2)o(2) cathode materials by ga doping
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8067597/
https://www.ncbi.nlm.nih.gov/pubmed/33916961
http://dx.doi.org/10.3390/ma14081816
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