Atomistic analysis of the ion transport in polymer electrolytes for all-solid-state Li-ion batteries was performed using molecular dynamics simulations to investigate the relationship between Li-ion transport and polymer morphology. Polyethylene oxide (PEO) and poly(diethylene oxide-alt-oxymethylene), P(2EO-MO), were used as the electrolyte materials, and the effects of salt concentrations and polymer types on the ion transport properties were explored. The size and number of LiTFSI clusters were found to increase with increasing salt concentrations, leading to a decrease in ion diffusivity at high salt concentrations. The Li-ion transport mechanisms were further analyzed by calculating the inter/intra-hopping rate and distance at various i...
Nonaqueous polyelectrolyte solutions have been recently proposed as high Li+ transference number ele...
Polymer electrolytes have significant promise for many lithium-ion battery applications because they...
All-solid-state batteries (ASSB) are experiencing a growing scientific interest in recent years as p...
Currently available solid polymer electrolytes for Li-ion cells require deeper understanding and sig...
While ion transport in solid polymer electrolytes (SPEs) has been explored for decades, there still ...
We employ atomistic mol. dynamics (MD), in tandem with exptl. studies, to elucidate the mechanisms o...
Solid polymer electrolytes have been the subject of considerable fundamental and applied chem. resea...
Solid polymer electrolytes have been the subject of considerable fundamental and applied chem. resea...
We herein report an all-atom molecular dynamics study on the role of solvent polarity for Li+ diffus...
We herein report an all-atom molecular dynamics study on the role of solvent polarity for Li+ diffus...
dissertationIonic transport is ubiquitous in the world. Energy-storage systems, such as lithiumion b...
Understanding the ionic diffusion mechanism in polymer electrolytes is critical to the development o...
<div> <div> <div> <p>The model and analysis methods developed in this work are generally applicable ...
This project was a molecular dynamics study of the relevant issues associated with the structure and...
Polymer electrolytes have significant promise for many lithium-ion battery applications because they...
Nonaqueous polyelectrolyte solutions have been recently proposed as high Li+ transference number ele...
Polymer electrolytes have significant promise for many lithium-ion battery applications because they...
All-solid-state batteries (ASSB) are experiencing a growing scientific interest in recent years as p...
Currently available solid polymer electrolytes for Li-ion cells require deeper understanding and sig...
While ion transport in solid polymer electrolytes (SPEs) has been explored for decades, there still ...
We employ atomistic mol. dynamics (MD), in tandem with exptl. studies, to elucidate the mechanisms o...
Solid polymer electrolytes have been the subject of considerable fundamental and applied chem. resea...
Solid polymer electrolytes have been the subject of considerable fundamental and applied chem. resea...
We herein report an all-atom molecular dynamics study on the role of solvent polarity for Li+ diffus...
We herein report an all-atom molecular dynamics study on the role of solvent polarity for Li+ diffus...
dissertationIonic transport is ubiquitous in the world. Energy-storage systems, such as lithiumion b...
Understanding the ionic diffusion mechanism in polymer electrolytes is critical to the development o...
<div> <div> <div> <p>The model and analysis methods developed in this work are generally applicable ...
This project was a molecular dynamics study of the relevant issues associated with the structure and...
Polymer electrolytes have significant promise for many lithium-ion battery applications because they...
Nonaqueous polyelectrolyte solutions have been recently proposed as high Li+ transference number ele...
Polymer electrolytes have significant promise for many lithium-ion battery applications because they...
All-solid-state batteries (ASSB) are experiencing a growing scientific interest in recent years as p...