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20172025
most citedLithium-ion battery degradation: how to model it

376 citations · 377 across the 6 of their papers we have counts for

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Showing physics.chem-phShow all

5 papers · 1 filter

physics.chem-ph2023★ 1 cited

Lithium-ion battery performance model including solvent segregation effects

Ruihe Li, Simon O'Kane, Andrew Wang +5

A model of a lithium-ion battery containing a cosolvent electrolyte is developed and implemented within the open-source PyBaMM platform. Lithium-ion electrolytes are essential to b…

physics.chem-ph2023

Lithium-ion battery degradation: using degradation mode analysis to validate lifetime prediction modelling

Ruihe Li, Niall D. Kirkaldy, Fabian Oehler +3

Predicting lithium-ion battery lifetime is one of the greatest unsolved problems in battery research right now. Recent years have witnessed a surge in lifetime prediction papers us…

physics.chem-ph2023

A million cycles in a day: enabling high-throughput computing of lithium-ion battery degradation with physics-based models

Ruihe Li, Simon O'Kane, Jianbo Huang +2

High-throughput computing (HTC) is a pivotal asset in many scientific fields, such as biology, material science and machine learning. Applying HTC to the complex physics-based degr…

physics.chem-ph2021★ 376 cited

Lithium-ion battery degradation: how to model it

Simon E. J. O'Kane, Weilong Ai, Ganesh Madabattula +7

Predicting lithium-ion battery degradation is worth billions to the global automotive, aviation and energy storage industries, to improve performance and safety and reduce warranty…

physics.chem-ph2021

Parameterising continuum level Li-ion battery models & the LiionDB database

A. A. Wang, S. E. J. O'Kane, F. Brosa Planella +9

The Doyle-Fuller-Newman framework is the most popular physics-based continuum-level description of the chemical and dynamical internal processes within operating lithium-ion-batter…