2021 Fall.Includes bibliographical references.Room-temperature ionic liquids (RTILs) are pure molten salts that have zero vapor pressure, a wide range of thermal stability, negligible flammability, and high ionic conductivity. These qualities make them desirable as electrolyte replacements for the more common lithium salt-doped carbonate solvents which are ubiquitous in current battery technology despite being exceptionally flammable. Use of liquid electrolytes, even non-flammable ones, has its drawbacks and challenges, like preventing leakage of the electrolyte and maintaining good contact with electrode surfaces, particularly when the battery electrodes or container become physically warped. With the emergence of flexible electronics tech...
Poly(ionic liquid)s (PILs) have attracted considerable attention as innovative single-ion solid po...
Room temperature ionic liquids (ILs) are a unique class of solvents which are characterized by non-v...
Herein, we report on an advanced design for polymer electrolytes (PEs) based on our previously repor...
Poly(ionic liquid)s (PILs) have attracted a considerable attention as innovative single-ion solid po...
Ionic liquids (ILs) are seen as liquids with great and novel potential in various applications such ...
Abstract Herein, the use of a novel block copolymer host, based on a polymerized ionic liquid block ...
Incorporating an ionic liquid into one block copolymer microphase provides a platform for combining ...
Poly(ionic liquid)s (PILs) have attracted considerable attention as innovative single-ion solid poly...
The most daunting challenge in solid-state polymer electrolyte membranes (PEMs) is to achieve high i...
Solvent-free electrolytes are being considered as the keystone element for the development of safer ...
Advanced solid-state polymer electrolytes for electrochemical and energy storage applications are ne...
We describe here the electrochemical properties and battery performance of polymer electrolytes comp...
Herein, we report on an advanced design for polymer electrolytes (PEs) based on our previously repor...
Herein, we report on an advanced design for polymer electrolytes (PEs) based on our previously repor...
Herein, we report on an advanced design for polymer electrolytes (PEs) based on our previously repor...
Poly(ionic liquid)s (PILs) have attracted considerable attention as innovative single-ion solid po...
Room temperature ionic liquids (ILs) are a unique class of solvents which are characterized by non-v...
Herein, we report on an advanced design for polymer electrolytes (PEs) based on our previously repor...
Poly(ionic liquid)s (PILs) have attracted a considerable attention as innovative single-ion solid po...
Ionic liquids (ILs) are seen as liquids with great and novel potential in various applications such ...
Abstract Herein, the use of a novel block copolymer host, based on a polymerized ionic liquid block ...
Incorporating an ionic liquid into one block copolymer microphase provides a platform for combining ...
Poly(ionic liquid)s (PILs) have attracted considerable attention as innovative single-ion solid poly...
The most daunting challenge in solid-state polymer electrolyte membranes (PEMs) is to achieve high i...
Solvent-free electrolytes are being considered as the keystone element for the development of safer ...
Advanced solid-state polymer electrolytes for electrochemical and energy storage applications are ne...
We describe here the electrochemical properties and battery performance of polymer electrolytes comp...
Herein, we report on an advanced design for polymer electrolytes (PEs) based on our previously repor...
Herein, we report on an advanced design for polymer electrolytes (PEs) based on our previously repor...
Herein, we report on an advanced design for polymer electrolytes (PEs) based on our previously repor...
Poly(ionic liquid)s (PILs) have attracted considerable attention as innovative single-ion solid po...
Room temperature ionic liquids (ILs) are a unique class of solvents which are characterized by non-v...
Herein, we report on an advanced design for polymer electrolytes (PEs) based on our previously repor...