Poly(ethylene oxide) (PEO)-based polymer electrolytes are a promising class of materials for use in lithium-ion batteries due to their high ionic conductivity and flexibility. In this study, the effects of polymer architecture including linear, star, and hyperbranched and salt (lithiumbis(trifluoromethanesulfonyl)imide (LiTFSI)) concentration on the glass transition (Tg), microstructure, phase diagram, free volume, and bulk viscosity, all of which play a significant role in determining the ionic conductivity of the electrolyte, have been systematically studied for PEO-based polymer electrolytes. The branching of PEO widens the liquid phase toward lower salt concentrations, suggesting decreased crystallization and improved ion coordination. ...
Polymer electrolytes may enable the next generation of lithium ion batteries with improved energy de...
Block copolymer electrolytes have been shown to increase the cycle life of rechargeable batteries th...
Poly(ethylene oxide) (PEO) is the most widely used polymer in the field of solid polymer electrolyte...
Poly(ethylene oxide) (PEO)-based polymer electrolytes are a promising class of materials for use in ...
International audienceWe explore the relationship between the morphology and ionic conductivity of b...
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...
Block copolymer electrolytes have been shown to increase the cycle life of rechargeable batteries th...
We explore the relationship between the morphology and ionic conductivity of block copolymer electro...
<div> <div> <div> <p>The model and analysis methods developed in this work are generally applicable ...
Polymer electrolytes may enable the next generation of lithium ion batteries with improved energy de...
Poly(ethylene oxide) (PEO) is the most widely used polymer in the field of solid polymer electrolyte...
We explore the relationship between the morphology and ionic conductivity of block copolymer electro...
Polymer electrolytes may enable the next generation of lithium ion batteries with improved energy de...
Polymer electrolytes may enable the next generation of lithium ion batteries with improved energy de...
Polymer electrolytes may enable the next generation of lithium ion batteries with improved energy de...
Block copolymer electrolytes have been shown to increase the cycle life of rechargeable batteries th...
Poly(ethylene oxide) (PEO) is the most widely used polymer in the field of solid polymer electrolyte...
Poly(ethylene oxide) (PEO)-based polymer electrolytes are a promising class of materials for use in ...
International audienceWe explore the relationship between the morphology and ionic conductivity of b...
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...
Block copolymer electrolytes have been shown to increase the cycle life of rechargeable batteries th...
We explore the relationship between the morphology and ionic conductivity of block copolymer electro...
<div> <div> <div> <p>The model and analysis methods developed in this work are generally applicable ...
Polymer electrolytes may enable the next generation of lithium ion batteries with improved energy de...
Poly(ethylene oxide) (PEO) is the most widely used polymer in the field of solid polymer electrolyte...
We explore the relationship between the morphology and ionic conductivity of block copolymer electro...
Polymer electrolytes may enable the next generation of lithium ion batteries with improved energy de...
Polymer electrolytes may enable the next generation of lithium ion batteries with improved energy de...
Polymer electrolytes may enable the next generation of lithium ion batteries with improved energy de...
Block copolymer electrolytes have been shown to increase the cycle life of rechargeable batteries th...
Poly(ethylene oxide) (PEO) is the most widely used polymer in the field of solid polymer electrolyte...