Composite polymer electrolytes (CPEs) can significantly improve the performance in electrochemical devices such as lithium-ion batteries. This review summarizes property/performance relationships in the case where nanoparticles are introduced to polymer electrolytes. It is the aim of this review to provide a knowledge network that elucidates the role of nano-additives in the CPEs. Central to the discussion is the impact on the CPE performance of properties such as crystalline/amorphous structure, dielectric behavior, and interactions within the CPE. The amorphous domains of semi-crystalline polymer facilitate the ion transport, while an enhanced mobility of polymer chains contributes to high ionic conductivity. Dielectric properties reflect...
Improvement of electrical conductivity of poly ethylene oxide (PEO)-LiI polymer electrolytes is nece...
The ion conduction and thermal properties of composite solid polymer electrolyte (SPE) comprising Po...
The physical and chemical properties of a new class of lithium conducting polymer electrolytes forme...
Environmental problems lead to the need for new technologies in the fields of energy production and ...
For the next generation of safe and high energy rechargeable lithium metal batteries, we introduce n...
Composite polymer electrolytes (CPEs) incorporate the advantages of solid polymer electrolytes (SPEs...
Electrolytes with high ionic conductivity, lithium transference numbers, and sufficient mechanical s...
Solid composite electrolytes combining an ionic molecular phase to facilitate ion transport with a p...
Composite polymer electrolytes (CPE) are a very promising strategy for using lithium metal anodes sa...
Polymer electrolytes, which hold the key of successful operation of all solid state ionic devices, h...
It has long been recognized that secondary batteries containing lithium metal anodes have some of th...
In this paper, we report an enhancement in ionic conductivity in a new nano-composite solid polymer ...
In this paper, we report an enhancement in ionic conductivity in a new nano-composite solid polymer ...
The ion conduction and thermal properties of composite solid polymer electrolyte (SPE) comprising Po...
Abstract Compared with commercial lithium batteries with liquid electrolytes, all‐solid‐state lithiu...
Improvement of electrical conductivity of poly ethylene oxide (PEO)-LiI polymer electrolytes is nece...
The ion conduction and thermal properties of composite solid polymer electrolyte (SPE) comprising Po...
The physical and chemical properties of a new class of lithium conducting polymer electrolytes forme...
Environmental problems lead to the need for new technologies in the fields of energy production and ...
For the next generation of safe and high energy rechargeable lithium metal batteries, we introduce n...
Composite polymer electrolytes (CPEs) incorporate the advantages of solid polymer electrolytes (SPEs...
Electrolytes with high ionic conductivity, lithium transference numbers, and sufficient mechanical s...
Solid composite electrolytes combining an ionic molecular phase to facilitate ion transport with a p...
Composite polymer electrolytes (CPE) are a very promising strategy for using lithium metal anodes sa...
Polymer electrolytes, which hold the key of successful operation of all solid state ionic devices, h...
It has long been recognized that secondary batteries containing lithium metal anodes have some of th...
In this paper, we report an enhancement in ionic conductivity in a new nano-composite solid polymer ...
In this paper, we report an enhancement in ionic conductivity in a new nano-composite solid polymer ...
The ion conduction and thermal properties of composite solid polymer electrolyte (SPE) comprising Po...
Abstract Compared with commercial lithium batteries with liquid electrolytes, all‐solid‐state lithiu...
Improvement of electrical conductivity of poly ethylene oxide (PEO)-LiI polymer electrolytes is nece...
The ion conduction and thermal properties of composite solid polymer electrolyte (SPE) comprising Po...
The physical and chemical properties of a new class of lithium conducting polymer electrolytes forme...