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Experiment and Electro-Thermo-Chemical Modeling on Rapid Resistive Discharge of Large-Capacity Lithium Ion Battery
Chil-Hoon Doh, Yoon-Cheol Ha, Seung-Wook Eom, Jihyun Yu, Seon-Hwa Choe, Seog-Whan Kim, Jae-Won Choi


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Thermo electrochemical modeling of high capacity lithium-ion cells
Vehicle Thermal Management Systems Conference and Exhibition (VTMS10). 2011;323-333   Crossref logo
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Analysis of the Thermo-Mechanical-Chemical Coupled Response of a Lithium-Ion Battery Particle during a Charge-Discharge Cycle
Journal of The Electrochemical Society. 2019;166(3):A5445-A5461   Crossref logo

Analysis on Charge and Discharge Temperature Characteristics of Lithium-ion Batteries
Key Technologies on New Energy Vehicles. 2022;35-61   Crossref logo

Rapid Charge and Discharge Property of High Capacity Lithium Ion Battery applying 3D-Patterned Electrode
ECS Meeting Abstracts. 2012;MA2012-02(10):799-799   Crossref logo
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Numerical Modeling of Lithium Ion Battery Capacity Fading on Electric Vehicles
ECS Meeting Abstracts. 2016;MA2016-02(1):103-103   Crossref logo
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Rapid charge and discharge property of high capacity lithium ion battery applying three-dimensionally patterned electrode
Journal of Power Sources. 2014;256:244-249   Crossref logo
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Large Plastic Deformation in High-Capacity Lithium-Ion Batteries Caused by Charge and Discharge
Journal of the American Ceramic Society. 2011;94:s226-s235   Crossref logo
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Survey and sensitivity analysis of critical parameters in lithium-ion battery thermo-electrochemical modeling
Electrochimica Acta. 2021;394:139098   Crossref logo
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Lithium-ion Battery Electro-thermal Model and Its Application in the Numerical Simulation of Short Circuit Experiment
World Electric Vehicle Journal. 2013;6(3):603-610   Crossref logo

A criterion combined of bulk and surface lithium storage to predict the capacity of porous carbon lithium-ion battery anodes: lithium-ion battery anode capacity prediction
Carbon Letters. 2021;31(5):985-990   Crossref logo
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