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Analysis of electrochemical and thermal behavior of Li-ion cells
Venkat Srinivasan
,
C. Y. Wang
Mechanical Engineering
Research output
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Contribution to journal
›
Article
›
peer-review
442
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Keyphrases
Thermal Behavior
100%
Li-ion
100%
Electrochemical Behavior
100%
Heat Generation Rate
66%
Two Dimensional
33%
First-principles
33%
Temperature Effect
33%
Heat Generation
33%
Model Simulation
33%
Electrical Energy
33%
Thermal Model
33%
Thermal Energy
33%
Matrix Phase
33%
Thermal Environment
33%
Solution Phase
33%
Parameter Dependence
33%
Transport Mass
33%
Irreversible Heat
33%
Entropic Contribution
33%
Arrhenius Expression
33%
Electrochemical Modeling
33%
Electrochemical Model
33%
Principles-based
33%
Carbon Electrode
33%
Reversible Heat
33%
Transport Kinetics
33%
Active Material Utilization
33%
Mass Transfer Parameters
33%
Lumped Thermal Model
33%
Modeling Approaches
33%
Manganese Hydroxide
33%
Temperature Dependence
33%
Engineering
Heat Generation
100%
Thermal Behavior
100%
Thermal Model
66%
Temperature Dependence
33%
Two Dimensional
33%
Active Material
33%
Material Utilization
33%
Arrhenius
33%
Thermal Energy
33%
Mass Transport
33%
Thermal Environment
33%
Electric Power
33%
Physics
Heat Generation
100%
Temperature Dependence
33%
Thermal Environment
33%
First Principle
33%
Electrochemistry
33%
Mass Transport
33%
Transportation
33%
electrode
33%
Chemical Engineering
Chemical Kinetics Characteristics
100%
Manganese Oxide
100%
Mass Transport
100%
Material Science
Lithium Ion
100%
Manganese Oxide
33%
Carbon Electrode
33%