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Study on Attenuation Mechanism of High Energy Density Lithium Rich Battery Materials
by
Ren, Huanhuan
, Wang, Jianbin
, Zou, Daijiang
, Jia, Guorui
, Chen, Chuan
in
Additives
/ attachment mechanism
/ Attenuation
/ Cathodes
/ Computational chemistry
/ Decomposition
/ Electrode materials
/ Electrolyte additive
/ Lithium
/ Lithium rich layered oxide
/ Physics
/ Power battery
2023
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Study on Attenuation Mechanism of High Energy Density Lithium Rich Battery Materials
by
Ren, Huanhuan
, Wang, Jianbin
, Zou, Daijiang
, Jia, Guorui
, Chen, Chuan
in
Additives
/ attachment mechanism
/ Attenuation
/ Cathodes
/ Computational chemistry
/ Decomposition
/ Electrode materials
/ Electrolyte additive
/ Lithium
/ Lithium rich layered oxide
/ Physics
/ Power battery
2023
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Do you wish to request the book?
Study on Attenuation Mechanism of High Energy Density Lithium Rich Battery Materials
by
Ren, Huanhuan
, Wang, Jianbin
, Zou, Daijiang
, Jia, Guorui
, Chen, Chuan
in
Additives
/ attachment mechanism
/ Attenuation
/ Cathodes
/ Computational chemistry
/ Decomposition
/ Electrode materials
/ Electrolyte additive
/ Lithium
/ Lithium rich layered oxide
/ Physics
/ Power battery
2023
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Study on Attenuation Mechanism of High Energy Density Lithium Rich Battery Materials
Journal Article
Study on Attenuation Mechanism of High Energy Density Lithium Rich Battery Materials
2023
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Overview
The development of lithium rich layered oxide cathode materials with high energy density is one of the keys to improve the range of new energy vehicles. However, there are two bottlenecks in the development of this material: the voltage attenuation caused by structural transformation and the drastic decomposition of electrolyte at high voltage. In this paper, spherical Li 1.2 Mn 0.54 Co 0.13 Ni 0.13 O 2 cathode material (LLO) was prepared, and the cycle performance of LLO cathode in LiBOB electrolyte with different content was compared. In addition, the effect of LiBOB electrolyte additives on lithium rich layered oxide materials was investigated. The decomposition path of LiBOB and the composition of stable CEI film were inferred by using computational chemistry and a variety of surface / interface detection methods.
Publisher
IOP Publishing
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