Most storage materials exhibit phase changes, which cause stresses and, thus, lead to damage of the electrode particles. In this work, a phase-field model for the cathode material NaxFePO4 of Na-ion batteries is studied to understand phase changes and stress evolution. Furthermore, we study the particle size and SOC dependent miscibility gap of the nanoscale insertion materials. Finally, we introduce the nonlocal species concentration theory, and show how the nonlocality influences the results
To study the electrochemical reaction on surfaces, phase interfaces, and crack surfaces in lithium i...
Intercalation processes occur in a single crystallite of many electrode materials for a certain peri...
Whilst extensive research has been conducted on the effects of temperature in lithium-ion batteries,...
Most storage materials exhibit phase changes, which cause stresses and, thus, lead to damage of the ...
A promising cathodic material for lithium ion batteries is lithium manganese oxide. However, over ba...
In active electrode materials of litium ion batteries, there exists a coupling beween the field of l...
This chapter reviews several theoretical models that are used to compute the stress fields inside th...
Lithium-ion batteries, with their high energy densities and light-weight designs, have found broad a...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
A fast numerical method for an advanced electro-chemo-mechanical model is developed which is able to...
In this study, the phase separation phenomenon and diffusion-induced stresses in lithium iron phosph...
A fast numerical method for an advanced electro-chemo-mechanical model is developed which is able to...
Many physical and chemical properties of Na$^{+}$ are very similar to those of Li$^{+}$, and therefo...
During the course of thousands of charging and discharging cycles, batteries commonly undergo capaci...
A theoretical investigation of the effects of elastic coherency strain on the thermodynamics, kineti...
To study the electrochemical reaction on surfaces, phase interfaces, and crack surfaces in lithium i...
Intercalation processes occur in a single crystallite of many electrode materials for a certain peri...
Whilst extensive research has been conducted on the effects of temperature in lithium-ion batteries,...
Most storage materials exhibit phase changes, which cause stresses and, thus, lead to damage of the ...
A promising cathodic material for lithium ion batteries is lithium manganese oxide. However, over ba...
In active electrode materials of litium ion batteries, there exists a coupling beween the field of l...
This chapter reviews several theoretical models that are used to compute the stress fields inside th...
Lithium-ion batteries, with their high energy densities and light-weight designs, have found broad a...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
A fast numerical method for an advanced electro-chemo-mechanical model is developed which is able to...
In this study, the phase separation phenomenon and diffusion-induced stresses in lithium iron phosph...
A fast numerical method for an advanced electro-chemo-mechanical model is developed which is able to...
Many physical and chemical properties of Na$^{+}$ are very similar to those of Li$^{+}$, and therefo...
During the course of thousands of charging and discharging cycles, batteries commonly undergo capaci...
A theoretical investigation of the effects of elastic coherency strain on the thermodynamics, kineti...
To study the electrochemical reaction on surfaces, phase interfaces, and crack surfaces in lithium i...
Intercalation processes occur in a single crystallite of many electrode materials for a certain peri...
Whilst extensive research has been conducted on the effects of temperature in lithium-ion batteries,...