Research progress on Li- and Mn-rich cathode materials for lithium-ion batteries
As the development of society, the specific energy density of the commercial lithium-ion battery still cannot meet the requirements for practical applications, such as electric vehicles, 3C(computer, communication and consumer electronics) products and energy storage devices. The Li- and Mn-rich cat...
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Journal of Aeronautical Materials
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doaj-e4615aa462cc4f11bd1881cdaec85c952021-04-15T08:30:42ZzhoJournal of Aeronautical MaterialsJournal of Aeronautical Materials1005-50531005-50532021-02-0141111810.11868/j.issn.1005-5053.2020.000108a2020-0108Research progress on Li- and Mn-rich cathode materials for lithium-ion batteriesNAN Wenzheng0WANG Jixian1CHEN Xiang2PENG Sikan3YAN Shaojiu4AECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaAECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaAECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaAECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaAECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaAs the development of society, the specific energy density of the commercial lithium-ion battery still cannot meet the requirements for practical applications, such as electric vehicles, 3C(computer, communication and consumer electronics) products and energy storage devices. The Li- and Mn-rich cathode materials are expected to be the key electrode materials for high energy density lithium-ion battery due to their high electrochemical capacity (≈250 mAh/g), high operating voltage(≈3.6 V) and low cost. However, several issues and challenges limit their widespread applications for commercial lithium-ion battery, including high irreversible capacity, poor cycle life and fast voltage/capacity fading. In this paper, the latest research progress of Li- and Mn-rich cathode materials is reviewed, with emphasis on material structure, electrochemical reaction mechanism, failure mechanism and modification technology. The results show that ion doping, surface coating, crystal structure regulation and other techniques can significantly improve the electrochemical performance of Li and Mn-rich cathode materials. Finally, the development direction of Li- and Mn-rich cathode materials is prospected.http://jam.biam.ac.cn/article/doi/10.11868/j.issn.1005-5053.2020.000108lithium-ion batteryli- and mn-rich cathode materialmicrostructureelectrochemical reaction mechanismfailure mechanismmodification technology |
collection |
DOAJ |
language |
zho |
format |
Article |
sources |
DOAJ |
author |
NAN Wenzheng WANG Jixian CHEN Xiang PENG Sikan YAN Shaojiu |
spellingShingle |
NAN Wenzheng WANG Jixian CHEN Xiang PENG Sikan YAN Shaojiu Research progress on Li- and Mn-rich cathode materials for lithium-ion batteries Journal of Aeronautical Materials lithium-ion battery li- and mn-rich cathode material microstructure electrochemical reaction mechanism failure mechanism modification technology |
author_facet |
NAN Wenzheng WANG Jixian CHEN Xiang PENG Sikan YAN Shaojiu |
author_sort |
NAN Wenzheng |
title |
Research progress on Li- and Mn-rich cathode materials for lithium-ion batteries |
title_short |
Research progress on Li- and Mn-rich cathode materials for lithium-ion batteries |
title_full |
Research progress on Li- and Mn-rich cathode materials for lithium-ion batteries |
title_fullStr |
Research progress on Li- and Mn-rich cathode materials for lithium-ion batteries |
title_full_unstemmed |
Research progress on Li- and Mn-rich cathode materials for lithium-ion batteries |
title_sort |
research progress on li- and mn-rich cathode materials for lithium-ion batteries |
publisher |
Journal of Aeronautical Materials |
series |
Journal of Aeronautical Materials |
issn |
1005-5053 1005-5053 |
publishDate |
2021-02-01 |
description |
As the development of society, the specific energy density of the commercial lithium-ion battery still cannot meet the requirements for practical applications, such as electric vehicles, 3C(computer, communication and consumer electronics) products and energy storage devices. The Li- and Mn-rich cathode materials are expected to be the key electrode materials for high energy density lithium-ion battery due to their high electrochemical capacity (≈250 mAh/g), high operating voltage(≈3.6 V) and low cost. However, several issues and challenges limit their widespread applications for commercial lithium-ion battery, including high irreversible capacity, poor cycle life and fast voltage/capacity fading. In this paper, the latest research progress of Li- and Mn-rich cathode materials is reviewed, with emphasis on material structure, electrochemical reaction mechanism, failure mechanism and modification technology. The results show that ion doping, surface coating, crystal structure regulation and other techniques can significantly improve the electrochemical performance of Li and Mn-rich cathode materials. Finally, the development direction of Li- and Mn-rich cathode materials is prospected. |
topic |
lithium-ion battery li- and mn-rich cathode material microstructure electrochemical reaction mechanism failure mechanism modification technology |
url |
http://jam.biam.ac.cn/article/doi/10.11868/j.issn.1005-5053.2020.000108 |
work_keys_str_mv |
AT nanwenzheng researchprogressonliandmnrichcathodematerialsforlithiumionbatteries AT wangjixian researchprogressonliandmnrichcathodematerialsforlithiumionbatteries AT chenxiang researchprogressonliandmnrichcathodematerialsforlithiumionbatteries AT pengsikan researchprogressonliandmnrichcathodematerialsforlithiumionbatteries AT yanshaojiu researchprogressonliandmnrichcathodematerialsforlithiumionbatteries |
_version_ |
1721526486309011456 |