The predictive design of flexible and solvent-free polymer electrolytes for solid-state batteries requires an understanding of the fundamental principles governing the ion transport. In this work, we establish a correlation among the composite structures, polymer segmental dynamics, and lithium ion (Li+) transport in a ceramic-polymer composite. Elucidating this structure–property relationship will allow tailoring of the Li+ conductivity by optimizing the macroscopic electrochemical stability of the electrolyte. The ion dissociation from the slow polymer segmental dynamics was found to be enhanced by controlling the morphology and functionality of the polymer/ceramic interface. The chemical structure of the Li+ salt in the composite electro...
Composite electrolytes are widely studied for their potential in realizing improved ionic conductivi...
Replacing flammable organic liquid electrolytes with solid Li-ion conductors is a promising approach...
Hybrid polymer-ceramic electrolytes with high ceramic loading are currently investigated as a promis...
A better molecular-level understanding of Li+ diffusion through ceramic/polymer interfaces is key to...
A better molecular-level understanding of Li+ diffusion through ceramic/polymer interfaces is key to...
A better molecular-level understanding of Li+ diffusion through ceramic/polymer interfaces is key to...
When mixed with lithium salts, polymers that contain more than one chemical group, such as block cop...
When mixed with lithium salts, polymers that contain more than one chemical group, such as block cop...
Unlocking the full potential of solid-state electrolytes (SSEs) is key to enabling safer and more-en...
Solid-state electrolytes provide substantial improvements to safety and electrochemical stability in...
The Li ion conducting garnet Li7La3Zr2O12 (LLZO) has attracted substantial interest as a solid elect...
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...
The advent of Li-metal batteries has seen progress toward studies focused on the chemical modificati...
Solid-state electrolytes provide substantial improvements to safety and electrochemical stability in...
Composite electrolytes are widely studied for their potential in realizing improved ionic conductivi...
Replacing flammable organic liquid electrolytes with solid Li-ion conductors is a promising approach...
Hybrid polymer-ceramic electrolytes with high ceramic loading are currently investigated as a promis...
A better molecular-level understanding of Li+ diffusion through ceramic/polymer interfaces is key to...
A better molecular-level understanding of Li+ diffusion through ceramic/polymer interfaces is key to...
A better molecular-level understanding of Li+ diffusion through ceramic/polymer interfaces is key to...
When mixed with lithium salts, polymers that contain more than one chemical group, such as block cop...
When mixed with lithium salts, polymers that contain more than one chemical group, such as block cop...
Unlocking the full potential of solid-state electrolytes (SSEs) is key to enabling safer and more-en...
Solid-state electrolytes provide substantial improvements to safety and electrochemical stability in...
The Li ion conducting garnet Li7La3Zr2O12 (LLZO) has attracted substantial interest as a solid elect...
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...
The advent of Li-metal batteries has seen progress toward studies focused on the chemical modificati...
Solid-state electrolytes provide substantial improvements to safety and electrochemical stability in...
Composite electrolytes are widely studied for their potential in realizing improved ionic conductivi...
Replacing flammable organic liquid electrolytes with solid Li-ion conductors is a promising approach...
Hybrid polymer-ceramic electrolytes with high ceramic loading are currently investigated as a promis...