Comprehensive aging model coupling chemical and mechanical degradation mechanisms for NCM/C6-Si lithium-ion batteries
K Zhu, T Wang, Y Wu, J Luo, Y Huang - Energy Storage Materials, 2024 - Elsevier
The aging of lithium-ion batteries (LIBs) is synergistically influenced by multiple
chemical/mechanical degradation mechanisms. Therefore, conventional models that …
chemical/mechanical degradation mechanisms. Therefore, conventional models that …
[HTML][HTML] Understanding calendar aging degradation in cylindrical lithium-ion cell: A novel pseudo-4-dimensional electrochemical-thermal model
P Di Prima, D Dessantis, D Versaci, J Amici… - Applied Energy, 2025 - Elsevier
This study presents a comprehensive investigation of calendar aging degradation in
commercial 21,700 cylindrical lithium-ion cells with a LiNi 0.8 Mn 0.1 Co 0.1 O 2 (NMC811) …
commercial 21,700 cylindrical lithium-ion cells with a LiNi 0.8 Mn 0.1 Co 0.1 O 2 (NMC811) …
[HTML][HTML] Is silicon worth it? Modelling degradation in composite silicon–graphite lithium-ion battery electrodes
The addition of silicon into graphite lithium-ion battery anodes has the potential to increase
cell energy density. However, understanding the complex degradation behaviour in these …
cell energy density. However, understanding the complex degradation behaviour in these …
An mechanical/thermal analytical model for prismatic lithium-ion cells with silicon‑carbon electrodes in charge/discharge cycles
Z Huang, H Wang, Z Gan, T Yang, C Yuan, B Lei… - Applied Energy, 2024 - Elsevier
Conventional lithium-ion cell state analysis methods face challenges in applicability,
efficiency, and convergence for online state evaluation of cells with silicon‑carbon …
efficiency, and convergence for online state evaluation of cells with silicon‑carbon …
Design of silicon-based porous electrode in lithium-ion batteries: Insights from multiscale electrode model simulations
With the increasing use of silicon-based materials in commercial lithium-ion batteries, the
structural design of electrodes has become crucial, necessitating advanced electrode …
structural design of electrodes has become crucial, necessitating advanced electrode …
Development, characterization and validation of a novel physics-informed equivalent circuit model for silicon–graphite battery cells
The widespread deployment of electric vehicles (EVs), as well as the growing requirements
both from manufacturers and consumers, necessitate an increase in energy density with …
both from manufacturers and consumers, necessitate an increase in energy density with …
[HTML][HTML] Critical comparison of equivalent circuit and physics-based models for lithium-ion batteries: A graphite/lithium-iron-phosphate case study
Accurate modelling of Li-ion batteries is essential for optimising performance and safety
across a range of applications, from electric vehicles (EVs) to grid storage. This paper …
across a range of applications, from electric vehicles (EVs) to grid storage. This paper …
Lithium-ion battery heterogeneous electrochemical-thermal-mechanical multiphysics coupling model and characterization of microscopic properties
H Sun, W Tian, J Yue, F Su - Journal of Power Sources, 2025 - Elsevier
In the design and optimization process of lithium-ion battery electrodes, microscopic
performance characterization is extremely crucial. The current multiphysics field coupling …
performance characterization is extremely crucial. The current multiphysics field coupling …
Modelling of SiOx electrode degradation based on latent variables from 2D-SEM images
Y Takagishi, Y Hayashi, T Tsubota, T Yamaue - Journal of Energy Storage, 2025 - Elsevier
Si-based materials have gained attention as negative electrode materials for lithium-ion
batteries. However, it is still difficult to model and predict their degradation phenomena using …
batteries. However, it is still difficult to model and predict their degradation phenomena using …
Towards accurate simulation of the large-scale industry battery pack: A GW-based thermal-mechanical coupling method
Mechanical degradation and thermal stability are two of the crucial challenges for the safety
and reliability in the large-scale battery packs for electric vehicles. However, the use of the …
and reliability in the large-scale battery packs for electric vehicles. However, the use of the …