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Sacrificial Template Strategy toward a Hollow LiNi(1/3)Co(1/3)Mn(1/3)O(2) Nanosphere Cathode for Advanced Lithium-Ion Batteries

[Image: see text] In this work, a hollow LiNi(1/3)Co(1/3)Mn(1/3)O(2) (H-NCM) nanosphere cathode with excellent electrochemical performance is developed for lithium-ion batteries. Preparation of the H-NCM nanospheres involves the sacrificial template method, in which carbon nanospheres work as the te...

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Autores principales: Zhang, Yao, Zhang, Wansen, Shen, Shuiyun, Yan, Xiaohui, Wu, Ruofei, Wu, Aiming, Lastoskie, Christian, Zhang, Junliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6645208/
https://www.ncbi.nlm.nih.gov/pubmed/31457319
http://dx.doi.org/10.1021/acsomega.7b00764
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author Zhang, Yao
Zhang, Wansen
Shen, Shuiyun
Yan, Xiaohui
Wu, Ruofei
Wu, Aiming
Lastoskie, Christian
Zhang, Junliang
author_facet Zhang, Yao
Zhang, Wansen
Shen, Shuiyun
Yan, Xiaohui
Wu, Ruofei
Wu, Aiming
Lastoskie, Christian
Zhang, Junliang
author_sort Zhang, Yao
collection PubMed
description [Image: see text] In this work, a hollow LiNi(1/3)Co(1/3)Mn(1/3)O(2) (H-NCM) nanosphere cathode with excellent electrochemical performance is developed for lithium-ion batteries. Preparation of the H-NCM nanospheres involves the sacrificial template method, in which carbon nanospheres work as the template and polyvinylpyrrolidone works as an additive. Structural and morphological analyses show that the as-prepared H-NCM nanospheres are highly uniform with diameters of approximately 50 nm and wall thicknesses of 10 nm. Electrochemical tests demonstrate that the H-NCM cathode not only manifests outstanding rate performance in the potential window of 2.5–4.5 V with high reversible specific capacities of 205.6, 194.9, 177.8, 165.9, 151.7, 126.0, and 115.3 mA h g(–1) at 0.1, 0.2, 0.5, 1, 2, 5, and 10 C, respectively, but also delivers excellent stability with a capacity retention of 60.1% at 10 C after 2000 cycles. The superior electrochemical performance of the H-NCM cathode can be put down to the distinctive hollow interior structure with thin nanostructured walls, which can synergistically benefit the significantly enhanced rate capability and cycling stability.
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spelling pubmed-66452082019-08-27 Sacrificial Template Strategy toward a Hollow LiNi(1/3)Co(1/3)Mn(1/3)O(2) Nanosphere Cathode for Advanced Lithium-Ion Batteries Zhang, Yao Zhang, Wansen Shen, Shuiyun Yan, Xiaohui Wu, Ruofei Wu, Aiming Lastoskie, Christian Zhang, Junliang ACS Omega [Image: see text] In this work, a hollow LiNi(1/3)Co(1/3)Mn(1/3)O(2) (H-NCM) nanosphere cathode with excellent electrochemical performance is developed for lithium-ion batteries. Preparation of the H-NCM nanospheres involves the sacrificial template method, in which carbon nanospheres work as the template and polyvinylpyrrolidone works as an additive. Structural and morphological analyses show that the as-prepared H-NCM nanospheres are highly uniform with diameters of approximately 50 nm and wall thicknesses of 10 nm. Electrochemical tests demonstrate that the H-NCM cathode not only manifests outstanding rate performance in the potential window of 2.5–4.5 V with high reversible specific capacities of 205.6, 194.9, 177.8, 165.9, 151.7, 126.0, and 115.3 mA h g(–1) at 0.1, 0.2, 0.5, 1, 2, 5, and 10 C, respectively, but also delivers excellent stability with a capacity retention of 60.1% at 10 C after 2000 cycles. The superior electrochemical performance of the H-NCM cathode can be put down to the distinctive hollow interior structure with thin nanostructured walls, which can synergistically benefit the significantly enhanced rate capability and cycling stability. American Chemical Society 2017-11-03 /pmc/articles/PMC6645208/ /pubmed/31457319 http://dx.doi.org/10.1021/acsomega.7b00764 Text en Copyright © 2017 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Zhang, Yao
Zhang, Wansen
Shen, Shuiyun
Yan, Xiaohui
Wu, Ruofei
Wu, Aiming
Lastoskie, Christian
Zhang, Junliang
Sacrificial Template Strategy toward a Hollow LiNi(1/3)Co(1/3)Mn(1/3)O(2) Nanosphere Cathode for Advanced Lithium-Ion Batteries
title Sacrificial Template Strategy toward a Hollow LiNi(1/3)Co(1/3)Mn(1/3)O(2) Nanosphere Cathode for Advanced Lithium-Ion Batteries
title_full Sacrificial Template Strategy toward a Hollow LiNi(1/3)Co(1/3)Mn(1/3)O(2) Nanosphere Cathode for Advanced Lithium-Ion Batteries
title_fullStr Sacrificial Template Strategy toward a Hollow LiNi(1/3)Co(1/3)Mn(1/3)O(2) Nanosphere Cathode for Advanced Lithium-Ion Batteries
title_full_unstemmed Sacrificial Template Strategy toward a Hollow LiNi(1/3)Co(1/3)Mn(1/3)O(2) Nanosphere Cathode for Advanced Lithium-Ion Batteries
title_short Sacrificial Template Strategy toward a Hollow LiNi(1/3)Co(1/3)Mn(1/3)O(2) Nanosphere Cathode for Advanced Lithium-Ion Batteries
title_sort sacrificial template strategy toward a hollow lini(1/3)co(1/3)mn(1/3)o(2) nanosphere cathode for advanced lithium-ion batteries
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6645208/
https://www.ncbi.nlm.nih.gov/pubmed/31457319
http://dx.doi.org/10.1021/acsomega.7b00764
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