Journal
PROGRESS IN ENERGY
Volume 3, Issue 4, Pages -Publisher
IOP Publishing Ltd
DOI: 10.1088/2516-1083/ac1a65
Keywords
Monte Carlo; simulations; kinetic Monte Carlo; lithium-ion battery; post-lithium battery
Categories
Funding
- PIP CONICET
- FONCYT
- SECyT of the Universidad Nacional de Crdoba
- CCAD-UNC
- GPGPU Computing Group
- SNCAD-MinCyT, Argentina
- Faraday Institution
- PUE/2017 CONICET
- [11220150100624CO]
- [PICT-2015-1605]
- [EP/S003053/1]
- [FIRG003]
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Kinetic Monte Carlo (kMC) has been a significant simulation tool for Li-ion batteries research since 1994. Despite its advantages, its full potential in the field of lithium-ion batteries has not yet been fully utilized, but its impact is growing exponentially.
Since 1994, Kinetic Monte Carlo (kMC) has been applied to the study of Li-ion batteries and has demonstrated to be a remarkable simulation tool to properly describe the physicochemical processes involved, on the atomistic scale and over long time scales. With the growth of computing power and the widespread use of lithium-based storage systems, more contributions from theoretical studies have been requested. This has led to a remarkable growth of theoretical publications on Li-ion batteries; kMC has been one of the preferred techniques to study these systems. Despite the advantages it presents, kMC has not yet been fully exploited in the field of lithium-ion batteries (LIBs) and its impact in this field is increasing exponentially. In this review, we summarize the most important applications of kMC to the study of LIBs and then comment on the state-of-the-art and prospects for the future of this technique, in the context of multi-scale modeling. We also briefly discuss the prospects for applying kMC to post lithium-ion chemistries such as lithium-sulfur and lithium-air. Video Abstract: Kinetic Monte Carlo simulations applied to Li-ion and post Li-ion batteries: a key link in the multi-scale chain
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