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Li(1.2)Mn(0.54)Ni(0.13)Co(0.13)O(2) nanosheets with porous structure as a high-performance cathode material for lithium-ion batteries

The morphological and structural optimizations of electrode materials are efficient ways to enhance their electrochemical performance. Herein, we report a facile co-precipitation and subsequent calcination method to fabricate Li(1.2)Mn(0.54)Ni(0.13)Co(0.13)O(2) nanosheets consisting of interconnecte...

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Detalles Bibliográficos
Autores principales: Gao, Zhi, Sun, Wenliang, Pan, Xiaoliang, Xie, Shikun, Liu, Lijun, Xie, Chengning, Yuan, Huiling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9043626/
https://www.ncbi.nlm.nih.gov/pubmed/35494357
http://dx.doi.org/10.1039/d1ra06420g
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author Gao, Zhi
Sun, Wenliang
Pan, Xiaoliang
Xie, Shikun
Liu, Lijun
Xie, Chengning
Yuan, Huiling
author_facet Gao, Zhi
Sun, Wenliang
Pan, Xiaoliang
Xie, Shikun
Liu, Lijun
Xie, Chengning
Yuan, Huiling
author_sort Gao, Zhi
collection PubMed
description The morphological and structural optimizations of electrode materials are efficient ways to enhance their electrochemical performance. Herein, we report a facile co-precipitation and subsequent calcination method to fabricate Li(1.2)Mn(0.54)Ni(0.13)Co(0.13)O(2) nanosheets consisting of interconnected primary nanoparticles and open holes through the full thickness. By comparing the nanosheets and the agglomerated nanoparticles, the effects of the morphology and structure on the electrochemical performance are investigated. Specifically, the nanosheets exhibit a discharge capacity of 210 mA h g(−1) at 0.5C with a capacity retention of 85% after 100 cycles. The improved electrochemical performance could be attributed to their morphological and structural improvements, which may facilitate sufficient electrolyte contacts, short diffusion paths and good structural integrity during the charge/discharge process. This work provides a feasible approach to fabricate lithium-rich layered oxide cathode materials with 2D morphology and porous structure, and reveals the relationships between their morphology, structure and electrochemical performance.
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spelling pubmed-90436262022-04-28 Li(1.2)Mn(0.54)Ni(0.13)Co(0.13)O(2) nanosheets with porous structure as a high-performance cathode material for lithium-ion batteries Gao, Zhi Sun, Wenliang Pan, Xiaoliang Xie, Shikun Liu, Lijun Xie, Chengning Yuan, Huiling RSC Adv Chemistry The morphological and structural optimizations of electrode materials are efficient ways to enhance their electrochemical performance. Herein, we report a facile co-precipitation and subsequent calcination method to fabricate Li(1.2)Mn(0.54)Ni(0.13)Co(0.13)O(2) nanosheets consisting of interconnected primary nanoparticles and open holes through the full thickness. By comparing the nanosheets and the agglomerated nanoparticles, the effects of the morphology and structure on the electrochemical performance are investigated. Specifically, the nanosheets exhibit a discharge capacity of 210 mA h g(−1) at 0.5C with a capacity retention of 85% after 100 cycles. The improved electrochemical performance could be attributed to their morphological and structural improvements, which may facilitate sufficient electrolyte contacts, short diffusion paths and good structural integrity during the charge/discharge process. This work provides a feasible approach to fabricate lithium-rich layered oxide cathode materials with 2D morphology and porous structure, and reveals the relationships between their morphology, structure and electrochemical performance. The Royal Society of Chemistry 2021-11-15 /pmc/articles/PMC9043626/ /pubmed/35494357 http://dx.doi.org/10.1039/d1ra06420g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Gao, Zhi
Sun, Wenliang
Pan, Xiaoliang
Xie, Shikun
Liu, Lijun
Xie, Chengning
Yuan, Huiling
Li(1.2)Mn(0.54)Ni(0.13)Co(0.13)O(2) nanosheets with porous structure as a high-performance cathode material for lithium-ion batteries
title Li(1.2)Mn(0.54)Ni(0.13)Co(0.13)O(2) nanosheets with porous structure as a high-performance cathode material for lithium-ion batteries
title_full Li(1.2)Mn(0.54)Ni(0.13)Co(0.13)O(2) nanosheets with porous structure as a high-performance cathode material for lithium-ion batteries
title_fullStr Li(1.2)Mn(0.54)Ni(0.13)Co(0.13)O(2) nanosheets with porous structure as a high-performance cathode material for lithium-ion batteries
title_full_unstemmed Li(1.2)Mn(0.54)Ni(0.13)Co(0.13)O(2) nanosheets with porous structure as a high-performance cathode material for lithium-ion batteries
title_short Li(1.2)Mn(0.54)Ni(0.13)Co(0.13)O(2) nanosheets with porous structure as a high-performance cathode material for lithium-ion batteries
title_sort li(1.2)mn(0.54)ni(0.13)co(0.13)o(2) nanosheets with porous structure as a high-performance cathode material for lithium-ion batteries
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9043626/
https://www.ncbi.nlm.nih.gov/pubmed/35494357
http://dx.doi.org/10.1039/d1ra06420g
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