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Derivation of an effective thermal electrochemical model for porous  electrode batteries using asymptotic homogenisation | SpringerLink
Derivation of an effective thermal electrochemical model for porous electrode batteries using asymptotic homogenisation | SpringerLink

Improving Batteries by Modeling the Materials Space | BIOVIA Blog
Improving Batteries by Modeling the Materials Space | BIOVIA Blog

Characterising lithium-ion electrolytes via operando Raman  microspectroscopy | Nature Communications
Characterising lithium-ion electrolytes via operando Raman microspectroscopy | Nature Communications

A Quantitative Analytical Model for Predicting and Optimizing the Rate  Performance of Battery Cells - ScienceDirect
A Quantitative Analytical Model for Predicting and Optimizing the Rate Performance of Battery Cells - ScienceDirect

Electrolyte Design for Fast-Charging Li-Ion Batteries: Trends in Chemistry
Electrolyte Design for Fast-Charging Li-Ion Batteries: Trends in Chemistry

Schematic of the 1D electrochemical model in the x-direction of the... |  Download Scientific Diagram
Schematic of the 1D electrochemical model in the x-direction of the... | Download Scientific Diagram

DandeLiion v1: An Extremely Fast Solver for the Newman Model of Lithium-Ion  Battery (Dis)charge - IOPscience
DandeLiion v1: An Extremely Fast Solver for the Newman Model of Lithium-Ion Battery (Dis)charge - IOPscience

Controlling electrochemical growth of metallic zinc electrodes: Toward  affordable rechargeable energy storage systems
Controlling electrochemical growth of metallic zinc electrodes: Toward affordable rechargeable energy storage systems

Batteries | Free Full-Text | A Review on Temperature-Dependent  Electrochemical Properties, Aging, and Performance of Lithium-Ion Cells |  HTML
Batteries | Free Full-Text | A Review on Temperature-Dependent Electrochemical Properties, Aging, and Performance of Lithium-Ion Cells | HTML

1: Schematic of the Doyle-Fuller-Newman model [6]. The model considers... |  Download Scientific Diagram
1: Schematic of the Doyle-Fuller-Newman model [6]. The model considers... | Download Scientific Diagram

Quantifying the factors limiting rate performance in battery electrodes |  Nature Communications
Quantifying the factors limiting rate performance in battery electrodes | Nature Communications

Interfacial Effects in Lithium and Sodium Batteries - Usiskin - 2021 -  Advanced Energy Materials - Wiley Online Library
Interfacial Effects in Lithium and Sodium Batteries - Usiskin - 2021 - Advanced Energy Materials - Wiley Online Library

Methodology to Assess the Impact of Electrochemical Model Parameters Based  on Design of Experiments
Methodology to Assess the Impact of Electrochemical Model Parameters Based on Design of Experiments

A 3D schematic of a Li-ion cell (on the right-not to scale) consisting... |  Download Scientific Diagram
A 3D schematic of a Li-ion cell (on the right-not to scale) consisting... | Download Scientific Diagram

Printable, high-performance solid-state electrolyte films
Printable, high-performance solid-state electrolyte films

Li-Ion Battery: Heterogeneous Alternative to the Newman Model | COMSOL Blog
Li-Ion Battery: Heterogeneous Alternative to the Newman Model | COMSOL Blog

A Li2S-based all-solid-state battery with high energy and superior safety
A Li2S-based all-solid-state battery with high energy and superior safety

Practical assessment of the performance of aluminium battery technologies |  Nature Energy
Practical assessment of the performance of aluminium battery technologies | Nature Energy

1: Schematic of the Doyle-Fuller-Newman model [6]. The model considers... |  Download Scientific Diagram
1: Schematic of the Doyle-Fuller-Newman model [6]. The model considers... | Download Scientific Diagram

Parameter estimation of an electrochemistry‐based lithium‐ion battery model  using a two‐step procedure and a parameter sensitivity analysis - Jin -  2018 - International Journal of Energy Research - Wiley Online Library
Parameter estimation of an electrochemistry‐based lithium‐ion battery model using a two‐step procedure and a parameter sensitivity analysis - Jin - 2018 - International Journal of Energy Research - Wiley Online Library

Bridging physics-based and equivalent circuit models for lithium-ion  batteries - ScienceDirect
Bridging physics-based and equivalent circuit models for lithium-ion batteries - ScienceDirect

Energies | Free Full-Text | Temperature, Ageing and Thermal Management of  Lithium-Ion Batteries | HTML
Energies | Free Full-Text | Temperature, Ageing and Thermal Management of Lithium-Ion Batteries | HTML

Li metal deposition and stripping in a solid-state battery via Coble creep  | Nature
Li metal deposition and stripping in a solid-state battery via Coble creep | Nature

DandeLiion v1: An Extremely Fast Solver for the Newman Model of Lithium-Ion  Battery (Dis)charge - IOPscience
DandeLiion v1: An Extremely Fast Solver for the Newman Model of Lithium-Ion Battery (Dis)charge - IOPscience

Parameter estimation of an electrochemistry‐based lithium‐ion battery model  using a two‐step procedure and a parameter sensitivity analysis - Jin -  2018 - International Journal of Energy Research - Wiley Online Library
Parameter estimation of an electrochemistry‐based lithium‐ion battery model using a two‐step procedure and a parameter sensitivity analysis - Jin - 2018 - International Journal of Energy Research - Wiley Online Library

Parameter estimation of the Doyle–Fuller–Newman model for Lithium-ion  batteries by parameter normalization, grouping, and sensitivity analysis -  ScienceDirect
Parameter estimation of the Doyle–Fuller–Newman model for Lithium-ion batteries by parameter normalization, grouping, and sensitivity analysis - ScienceDirect

Toward Green Battery Cells: Perspective on Materials and Technologies -  Dühnen - 2020 - Small Methods - Wiley Online Library
Toward Green Battery Cells: Perspective on Materials and Technologies - Dühnen - 2020 - Small Methods - Wiley Online Library

Ohm's law for ion conduction in lithium and beyond-lithium battery  electrolytes: The Journal of Chemical Physics: Vol 151, No 2
Ohm's law for ion conduction in lithium and beyond-lithium battery electrolytes: The Journal of Chemical Physics: Vol 151, No 2