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Mitigating the Kinetic Hindrance of the Poly/Single-Crystalline Ni-Rich Cathode-Based Electrode via Formation of the Superior Electronic/Ionic Pathway

Authors
Cho, HyukheePark, KwangJin
Issue Date
Sep-2022
Publisher
AMER CHEMICAL SOC
Keywords
Li-ion battery; nickel cobalt manganese oxide (NCM); Ni-rich NCM; conductive agent; carbon nanotube
Citation
ACS APPLIED ENERGY MATERIALS, v.5, no.9, pp.11223 - 11228
Journal Title
ACS APPLIED ENERGY MATERIALS
Volume
5
Number
9
Start Page
11223
End Page
11228
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/85610
DOI
10.1021/acsaem.2c01797
ISSN
2574-0962
Abstract
In previous work, it was confirmed that even if the same cathode active material is used, the performance of the electrode could be improved by solving issues such as the electrochemically inactive areas caused by nonuniform dispersion of the conductive agents, electrolyte penetration blocking caused by agglomerated carbon black, and low electrode porosity. Herein, the use of CNTs, a material with excellent dimensional stability and high electron conductivity (103 S cm(-1)) as conductive agent, is expected to be a solution that can reduce ion concentration polarization at high C rates by increasing the electrode porosity, as well as maintaining a good electron pathway. Therefore, in this study, we investigate how the addition of CNTs affects the performance of poly/single-crystalline Ni-rich NCM-based cathode electrodes. The results confirm that by adding CNTs to the poly/single-crystalline Ni-rich NCM-based electrode under high-rate (540 mA g(-1)) cycle conditions, the cycle retentions were improved by 3% in 50 cycles.
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Park, Kwang Jin
Engineering (기계·스마트·산업공학부(기계공학전공))
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