Predicting Active Material Utilization in LiFePO4 Electrodes Using a Multiscale Mathematical Model
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- Type
- article
- Published
- 2010-05-25
- Cited by
- 119
- References
- 49
- Access
- Open access
- OpenAlex
- https://openalex.org/W39802610
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:96994200
Keywords
Agglomerate, Electrolyte, Materials science, Cathode, Limiting
References
- Primary Alkaline Battery Cathodes: A Simplified Model for Porous Manganese Oxide Particle Discharge
- Measuring the Salt Activity Coefficient in Lithium-Battery Electrolytes
- Proof of Supervalent Doping in Olivine LiFePO4
- Design and Optimization of a Natural Graphite/Iron Phosphate Lithium-Ion Cell
- Novel electrolytes based on aliphatic oligoether dendrons
- Investigation on diffusion behavior of Li+ in LiFePO4 by capacity intermittent titration technique (CITT)
- High Resolution Schemes Using Flux Limiters for Hyperbolic Conservation Laws
- Wired Porous Cathode Materials: A Novel Concept for Synthesis of LiFePO4
- LiFePO4 doped with magnesium prepared by hydrothermal reaction in glucose solution
- Emulsion drying synthesis of olivine LiFePO4/C composite and its electrochemical properties as lithium intercalation material
- Atomic-Scale Investigation of Defects, Dopants, and Lithium Transport in the LiFePO4 Olivine-Type Battery Material
- Surfactant based sol–gel approach to nanostructured LiFePO4 for high rate Li-ion batteries
- Approaching Theoretical Capacity of LiFePO4 at Room Temperature at High Rates
- Quantifying tortuosity in porous Li-ion battery materials
- A review of recent developments in the synthesis procedures of lithium iron phosphate powders
- Characteristics of LiFePO4 obtained through a one step continuous hydrothermal synthesis process working in supercritical water
- How the electrolyte limits fast discharge in nanostructured batteries and supercapacitors
- Electrochemical characterisation and modelling of the mass transport phenomena in LiPF6–EC–EMC electrolyte
- Primary Alkaline Battery Cathodes A Three‐Scale Model
- ADSORPTION OF GASES IN MULTIMOLECULAR LAYERS
Cited by
- Suppression of phase separation in LiFePO₄ nanoparticles during battery discharge.
- Charge transfer kinetics at the solid–solid interface in porous electrodes
- Mathematical modelling of LiFePO4 cathodes
- Multicomponent charge transport in electrolyte solutions
- Aging formula for lithium ion batteries with solid electrolyte interphase layer growth
- Determination of state of charge-dependent asymmetric Butler–Volmer kinetics for LixCoO2 electrode using GITT measurements
- Modified empirical fitting of the discharge behavior of LiFePO\(_4\) batteries under various conditions
- Theory of chemical kinetics and charge transfer based on nonequilibrium thermodynamics.
- Lithium-ion battery modeling using non-equilibrium thermodynamics
- Homogenization of the Poisson-Nernst-Planck equations for Ion Transport in Charged Porous Media
- Modeling, simulation and experimental investigation of the thermal and electrochemical behavior of a LiFePO4-based lithium-ion battery
- A least squares based finite volume method for the Cahn-Hilliard and Cahn-Hilliard-reaction equations
- Phase Separation Dynamics in Isotropic Ion-Intercalation Particles
- Generalized moving boundary model for charge–discharge of LiFePO4/C cells
- Preparation of porous structure LiFePO4/C composite by template method for lithium-ion batteries
- Multiscale modelling and analysis of lithium-ion battery charge and discharge
- Multiscale Simulations of Li Ion Conductivity in Solid Electrolyte
- Mathematical Modeling of Lithium Iron Phosphate Electrode: Galvanostatic Charge/Discharge and Path Dependence
- Mathematical Modeling of Commercial LiFePO4 Electrodes Based on Variable Solid-State Diffusivity
- Interpreting Lithium Batteries Discharge Curves for Easy Identification of the Origin of Performance Limitations
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