Analysis of the Polarization in a Li-Ion Battery Cell by Numerical Simulations
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- Type
- article
- Published
- 2010-11-01
- Cited by
- 211
- References
- 35
- Access
- Open access
- OpenAlex
- https://openalex.org/W2122930958
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:97241753
Keywords
Electrolyte, Polarization (electrochemistry), Electrode, Concentration polarization, Electrochemistry
References
- Investigation of the oxygen evolving electrode in pH-neutral electrolytes: Modelling and experiments of the RDE-cell
- Characterisation and modelling of the transport properties in lithium battery gel electrolytes. Part I. The binary electrolyte PC/LiClO4
- Impedance as a Tool for Investigating Aging in Lithium-Ion Porous Electrodes I. Physically Based Electrochemical Model
- The Composite Insertion Electrode Theoretical Part. Equilibrium in the Insertion Compound and Linear Potential Dependence
- Transient Techniques for Investigating Mass-Transport Limitations in Gas Diffusion Electrodes I. Modeling the PEFC Cathode
- A Mathematical Model for Intercalation Electrode Behavior I. Effect of Particle‐Size Distribution on Discharge Capacity
- Modeling of Porous Insertion Electrodes with Liquid Electrolyte
- The Use of Mathematical-Modeling in the Design of Lithium Polymer Battery Systems
- Relaxation Phenomena in Lithium‐Ion‐Insertion Cells
- Analysis of a phase transition process controlled by diffusion, application to lithium insertion into V2O5
- Electrochemical Modeling of Lithium-Ion Positive Electrodes during Hybrid Pulse Power Characterization Tests
- X-ray photoelectron spectroscopy of negative electrodes from high-power lithium-ion cells showing various levels of power fade
- Modeling a Porous Intercalation Electrode with Two Characteristic Particle Sizes
- Electrochemical characterisation and modelling of the mass transport phenomena in LiPF6–EC–EMC electrolyte
- Capacity Fade Mechanisms and Side Reactions in Lithium‐Ion Batteries
- Heat‐Generation Rate and General Energy Balance for Insertion Battery Systems
- Alternating Current Impedance Electrochemical Modeling of Lithium-Ion Positive Electrodes
- Comparison of lithium-polymer cell performance with unity and nonunity transference numbers
- Comparison of Modeling Predictions with Experimental Data from Plastic Lithium Ion Cells
- Experiments on and Modeling of Positive Electrodes with Multiple Active Materials for Lithium-Ion Batteries
Cited by
- RTDS modelling of battery energy storage system
- A study of mass transport in a Room Temperature Ionic Liquid
- Capturing lithium-ion battery dynamics with support vector machine-based battery model
- Capacity Fade Analysis of the Lithium‐Ion Power Battery Cycling Process Based on an Electrochemical‐Thermal Coupling Model
- A support vector machine-based state-of-health estimation method for lithium-ion batteries under electric vehicle operation
- Solute-volume effects in electrolyte transport
- A convective transport theory for high rate discharge in lithium ion cells
- Integration of capacity fading in an electrochemical model of Li-ion batteries
- Impact of the flame retardant additive triphenyl phosphate (TPP) on the performance of graphite/LiFePO4 cells in high power applications
- Comparing aging of MCMB graphite/LiFePO4 cells at 22 °C and 55 °C – Electrochemical and photoelectron spectroscopy studies.
- Recent Progress in Layer-by-layer Assembly of Nanomaterials for Electrochemical Energy Storage Applications
- Electrochemical Characterization and Temperature Dependency of Mass-Transport Properties of LiPF6 in EC:DEC
- Quantifying mass transport during polarization in a Li ion battery electrolyte by in situ 7Li NMR imaging.
- Investigation of the polarization effect in lithium iron phosphate battery for electric vehicles
- Model Prediction and Experiments for the Electrode Design Optimization of LiFePO4/Graphite Electrodes in High Capacity Lithium-ion Batteries
- Aging in lithium-ion batteries: Model and experimental investigation of harvested LiFePO4 and mesocarbon microbead graphite electrodes
- PEDOT modified LiNi1/3Co1/3Mn1/3O2 with enhanced electrochemical performance for lithium ion batteries
- Electrochemical Characterization of Lithium Intercalation Processes of PAN-Based Carbon Fibers in a Microelectrode System
- Investigation of Short-Circuit Scenarios in a Lithium-Ion Battery Cell
- A study on the impact of lithium-ion cell relaxation on electrochemical impedance spectroscopy
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