An electrolyte destined for use in a dual-ion battery (DIB) must be stable at the inherently high potential required for anion intercalation in the graphite electrode, while also protecting the Al current collector from anodic dissolution. A higher salt concentration is needed in the electrolyte, in comparison to typical battery electrolytes, to maximize energy density, while ensuring acceptable ionic conductivity and operational safety. In recent years, studies have demonstrated that highly concentrated organic electrolytes, ionic liquids, gel polymer electrolytes (GPEs), ionogels, and water-in-salt electrolytes can potentially be used in DIBs. GPEs can help reduce the use of solvents and thus lead to a substantial change in the Coulombic ...
AbstractOwing to almost unmatched volumetric energy density, Li-based batteries have dominated the p...
In this work, we present a comprehensive study on the effect of adding different conductive salt add...
Research and development efforts on sodium-ion batteries are gaining momentum due to their potential...
An electrolyte destined for use in a dual-ion battery (DIB) must be stable at the inherently high po...
A dual-ion battery (DIB) is an emerging technology destined for use in stationary energy storage app...
Developing the next generation high energy density and safe batteries is of prime importance to meet...
Developing the next-generation high-energy density and safe batteries is of prime importance to meet...
Transitioning into a zero-emission society will require massive efforts with respect to the harnessi...
The constant increase in global energy demand and stricter environmental standards are calling for a...
Rechargeable batteries had become indispensable, as they supply the energy needed for our cars, phon...
Dual-ion batteries (DIBs) offer a great alternative to state-of-the-art lithium ion batteries, based...
International audienceIn this study, a gel polymer electrolyte (GPE) based on polymer ionic liquid (...
In this study, a new dual-ion battery (DIB) concept based on an aqueous/non-aqueous electrolyte is r...
Anion intercalation in the graphite cathode of a dual-ion battery (DIB) occurs at unusually high vol...
In order to keep abreast with the rapid development of portable electronic equipment, improving the ...
AbstractOwing to almost unmatched volumetric energy density, Li-based batteries have dominated the p...
In this work, we present a comprehensive study on the effect of adding different conductive salt add...
Research and development efforts on sodium-ion batteries are gaining momentum due to their potential...
An electrolyte destined for use in a dual-ion battery (DIB) must be stable at the inherently high po...
A dual-ion battery (DIB) is an emerging technology destined for use in stationary energy storage app...
Developing the next generation high energy density and safe batteries is of prime importance to meet...
Developing the next-generation high-energy density and safe batteries is of prime importance to meet...
Transitioning into a zero-emission society will require massive efforts with respect to the harnessi...
The constant increase in global energy demand and stricter environmental standards are calling for a...
Rechargeable batteries had become indispensable, as they supply the energy needed for our cars, phon...
Dual-ion batteries (DIBs) offer a great alternative to state-of-the-art lithium ion batteries, based...
International audienceIn this study, a gel polymer electrolyte (GPE) based on polymer ionic liquid (...
In this study, a new dual-ion battery (DIB) concept based on an aqueous/non-aqueous electrolyte is r...
Anion intercalation in the graphite cathode of a dual-ion battery (DIB) occurs at unusually high vol...
In order to keep abreast with the rapid development of portable electronic equipment, improving the ...
AbstractOwing to almost unmatched volumetric energy density, Li-based batteries have dominated the p...
In this work, we present a comprehensive study on the effect of adding different conductive salt add...
Research and development efforts on sodium-ion batteries are gaining momentum due to their potential...