In this study, lithium (Li) intercalation-induced stress of LiCoO2 with anisotropic properties using three-dimensional (3D) microstructures has been studied systematically. Phase field method was employed to generate LiCoO2 polycrystals with varying grain sizes. Li diffusion and stresses inside the polycrystalline microstructure with different grain size, grain orientation, and grain boundary diffusivity were investigated using finite element method. The results show that the anisotropic mechanical properties and Li concentration-dependent volume expansion coefficient have a very small influence on the Li chemical diffusion coefficients. The low partial molar volume of LiCoO2 leads to this phenomenon. The anisotropic mechanical properties h...
Computational analysis of lithium ion batteries has been improved since Newman and et al. suggested ...
The majority of the ceramic solid electrolytes (LLZO, LATP) demonstrate polycrystalline grain/grain-...
The influence of elastic strain on the lithium vacancy formation and migration in bulk LiCoO_2 is eva...
In this study, the stress generation of LiCoO2 with realistic 3D microstructures has been studied sy...
poster abstractLiCoO2 is a commonly used cathode material of Li-ion rechargeable batteries. In batte...
In this study, the diffusion induced stress of LiCoO2 half cell with a realistic 3D microstructure h...
poster abstractThe mechanical properties of LixCoO2 under various Li concentrations and associated a...
This thesis investigates the electro-chemo-mechanics behavior of electrodes in lithium ion batteries...
This study used first-principles calculations based on density functional theory with generalized gr...
Diffusion induces stresses in the electrode during charge and discharge processes of lithium ion bat...
The demand for higher specific capacity and rate capability has led to the adoption of nanostructure...
poster abstractLiNi0.33Mn0.33Co0.33O2 is a good substitute for LiCoO2 because of its good thermal st...
Intercalation processes occur in a single crystallite of many electrode materials for a certain peri...
Intercalation processes occur in a single crystallite of many electrode materials for a certain peri...
As novel electrodes of lithium-ion batteries, anisotropic nanocrystal materials with improved electr...
Computational analysis of lithium ion batteries has been improved since Newman and et al. suggested ...
The majority of the ceramic solid electrolytes (LLZO, LATP) demonstrate polycrystalline grain/grain-...
The influence of elastic strain on the lithium vacancy formation and migration in bulk LiCoO_2 is eva...
In this study, the stress generation of LiCoO2 with realistic 3D microstructures has been studied sy...
poster abstractLiCoO2 is a commonly used cathode material of Li-ion rechargeable batteries. In batte...
In this study, the diffusion induced stress of LiCoO2 half cell with a realistic 3D microstructure h...
poster abstractThe mechanical properties of LixCoO2 under various Li concentrations and associated a...
This thesis investigates the electro-chemo-mechanics behavior of electrodes in lithium ion batteries...
This study used first-principles calculations based on density functional theory with generalized gr...
Diffusion induces stresses in the electrode during charge and discharge processes of lithium ion bat...
The demand for higher specific capacity and rate capability has led to the adoption of nanostructure...
poster abstractLiNi0.33Mn0.33Co0.33O2 is a good substitute for LiCoO2 because of its good thermal st...
Intercalation processes occur in a single crystallite of many electrode materials for a certain peri...
Intercalation processes occur in a single crystallite of many electrode materials for a certain peri...
As novel electrodes of lithium-ion batteries, anisotropic nanocrystal materials with improved electr...
Computational analysis of lithium ion batteries has been improved since Newman and et al. suggested ...
The majority of the ceramic solid electrolytes (LLZO, LATP) demonstrate polycrystalline grain/grain-...
The influence of elastic strain on the lithium vacancy formation and migration in bulk LiCoO_2 is eva...