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20152021
most citedModelling electrode heterogeneity in lithium-ion batteries: unimodal and bimodal particle-size distributions

8 citations · 12 across the 4 of their papers we have counts for

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physics.chem-ph2021

Physical modelling of the slow voltage relaxation phenomenon in lithium-ion batteries

Toby Kirk, Colin P. Please, S. Jon Chapman

In the lithium-ion battery literature, discharges followed by a relaxation to equilibrium are frequently used to validate models and their parametrizations. Good agreement with exp…

physics.chem-ph2020

Charge transport modelling of lithium ion batteries

Giles W Richardson, Jamie M Foster, Rahifa Ranom +2

This paper presents the current state of mathematical modelling of the electrochemical behaviour of lithium-ion batteries as they are charged and discharged. It reviews the models…

physics.chem-ph2019

An asymptotic derivation of a single particle model with electrolyte

Scott G. Marquis, Valentin Sulzer, Robert Timms +2

The standard continuum model of a lithium-ion battery, the Doyle-Fuller-Newman (DFN) model, is computationally expensive to solve. Typically simpler models, such as the single part…

physics.chem-ph2019

Faster Lead-Acid Battery Simulations from Porous-Electrode Theory: II. Asymptotic Analysis

Valentin Sulzer, S. Jon Chapman, Colin P. Please +2

Electrochemical and equivalent-circuit modelling are the two most popular approaches to battery simulation, but the former is computationally expensive and the latter provides limi…

physics.chem-ph20154 cited

Some comments on the Butler-Volmer equation for modeling Lithium-ion batteries

A. M. Ramos, C. P. Please

In this article the Butler-Volmer equation used in describing Lithium-ion (Li-ion) batteries is discussed. First, a complete mathematical model based on a macro-homogeneous approac…