The demand for higher specific capacity and rate capability has led to the adoption of nanostructured electrodes for lithium-ion batteries. At these length scales, surface effects gain an appreciable impact not only on the electrochemical and mechanical behavior of the electrode material, but also on defect thermodynamics. The focus of this study is the distribution of surface-induced bulk stresses in a LiCoO2 nanoparticle and their impact on the migration of Li vacancies. LiCoO2 is a prototypical cathode material, where the diffusion of Li is mediated by the vacancy mechanism. For this investigation, elastic parameters and anisotropic surface stress components are computed using Density Functional Theory calculations. They are incorpora...
Development of high energy density solid-state batteries with Li metal anodes has been limited by un...
LiCoO2 is used as the cathode material in the majority of lithium ion batteries, and its optimizatio...
Electrode is a key component to remain durability and safety of lithium-ion (Li-ion) batteries. Li-i...
The demand for higher specific capacity and rate capability has led to the adoption of nanostructure...
Diffusion induces stresses in the electrode during charge and discharge processes of lithium ion bat...
The influence of elastic strain on the lithium vacancy formation and migration in bulk LiCoO_2 is eva...
The size- and shape-dependency of the chemo-mechanical behavior of spherical and ellipsoidal nanopar...
The present paper investigates the influences of surface tension and the stress distribution in the ...
In this study, the diffusion induced stress of LiCoO2 half cell with a realistic 3D microstructure h...
This thesis investigates the electro-chemo-mechanics behavior of electrodes in lithium ion batteries...
poster abstractA lithium-ion battery (Li-ion battery or LIB) is a rechargeable battery type in which...
This study used first-principles calculations based on density functional theory with generalized gr...
Due to the high energy and power density, Lithium-ion batteries (LIBs) have been widely employed in ...
Modeling the electrochemical behavior of Lithium Ion Batteries is a challenging task due to the high...
Lithium-ion batteries continue to be a critical part of the search for enhanced energy storage solut...
Development of high energy density solid-state batteries with Li metal anodes has been limited by un...
LiCoO2 is used as the cathode material in the majority of lithium ion batteries, and its optimizatio...
Electrode is a key component to remain durability and safety of lithium-ion (Li-ion) batteries. Li-i...
The demand for higher specific capacity and rate capability has led to the adoption of nanostructure...
Diffusion induces stresses in the electrode during charge and discharge processes of lithium ion bat...
The influence of elastic strain on the lithium vacancy formation and migration in bulk LiCoO_2 is eva...
The size- and shape-dependency of the chemo-mechanical behavior of spherical and ellipsoidal nanopar...
The present paper investigates the influences of surface tension and the stress distribution in the ...
In this study, the diffusion induced stress of LiCoO2 half cell with a realistic 3D microstructure h...
This thesis investigates the electro-chemo-mechanics behavior of electrodes in lithium ion batteries...
poster abstractA lithium-ion battery (Li-ion battery or LIB) is a rechargeable battery type in which...
This study used first-principles calculations based on density functional theory with generalized gr...
Due to the high energy and power density, Lithium-ion batteries (LIBs) have been widely employed in ...
Modeling the electrochemical behavior of Lithium Ion Batteries is a challenging task due to the high...
Lithium-ion batteries continue to be a critical part of the search for enhanced energy storage solut...
Development of high energy density solid-state batteries with Li metal anodes has been limited by un...
LiCoO2 is used as the cathode material in the majority of lithium ion batteries, and its optimizatio...
Electrode is a key component to remain durability and safety of lithium-ion (Li-ion) batteries. Li-i...