Electrode is a key component to remain durability and safety of lithium-ion (Li-ion) batteries. Li-ion insertion/removal and thermal expansion mismatch may induce high stress in electrode during charging and discharging processes. In this paper, we present a continuum model based on COMSOL Multiphysics software, which involves thermal, chemical and mechanical behaviors of electrodes. The results show that, because of diffusion-induced stress and thermal mismatch, the electrode geometry plays an important role in diffusion kinetics of Li-ions. A higher local compressive stress results in a lower Li-ion concentration and thus a lower capacity when a particle is embedded another, which is in agreement with experimental observations
Mechanical degradation is thought to be one of the causes of capacity fade within Lithium-Ion batter...
Structural batteries are multifunctional materials that are expected to perform multiple roles, i.e....
Binder which serves to maintain mechanical and electrical integrity of Lithium ion batteries and occ...
Whilst extensive research has been conducted on the effects of temperature in lithium-ion batteries,...
Lithium (Li) inserted into or extracted from the electrode in Li-ion battery causes stress which may...
In the development of the next generation of batteries with high capacity, improving our understandi...
Lithium insertion and removal in lithium ion battery electrodes can result in diffusion induced stre...
Rechargeable Li-ion batteries operate by cyclically inserting lithium into, and extracting lithium f...
During the course of thousands of charging and discharging cycles, batteries commonly undergo capaci...
Diffusion induces stresses in the electrode during charge and discharge processes of lithium ion bat...
Most electrodes undergo volume changes in lithium-ion batteries, and it turns out that the volume ch...
Models are developed for the transport of lithium (Li) ions in the electrolyte of Li ion batteries, ...
Li-ion batteries is a system that dynamically couples electrochemistry and mechanics. The electroche...
This thesis investigates the electro-chemo-mechanics behavior of electrodes in lithium ion batteries...
Due to the high energy and power density, Lithium-ion batteries (LIBs) have been widely employed in ...
Mechanical degradation is thought to be one of the causes of capacity fade within Lithium-Ion batter...
Structural batteries are multifunctional materials that are expected to perform multiple roles, i.e....
Binder which serves to maintain mechanical and electrical integrity of Lithium ion batteries and occ...
Whilst extensive research has been conducted on the effects of temperature in lithium-ion batteries,...
Lithium (Li) inserted into or extracted from the electrode in Li-ion battery causes stress which may...
In the development of the next generation of batteries with high capacity, improving our understandi...
Lithium insertion and removal in lithium ion battery electrodes can result in diffusion induced stre...
Rechargeable Li-ion batteries operate by cyclically inserting lithium into, and extracting lithium f...
During the course of thousands of charging and discharging cycles, batteries commonly undergo capaci...
Diffusion induces stresses in the electrode during charge and discharge processes of lithium ion bat...
Most electrodes undergo volume changes in lithium-ion batteries, and it turns out that the volume ch...
Models are developed for the transport of lithium (Li) ions in the electrolyte of Li ion batteries, ...
Li-ion batteries is a system that dynamically couples electrochemistry and mechanics. The electroche...
This thesis investigates the electro-chemo-mechanics behavior of electrodes in lithium ion batteries...
Due to the high energy and power density, Lithium-ion batteries (LIBs) have been widely employed in ...
Mechanical degradation is thought to be one of the causes of capacity fade within Lithium-Ion batter...
Structural batteries are multifunctional materials that are expected to perform multiple roles, i.e....
Binder which serves to maintain mechanical and electrical integrity of Lithium ion batteries and occ...