International audienceVertically oriented graphene nanosheets were synthesized by an alternative and simple approach based on electron cyclotron resonance-plasma enhanced chemical vapor deposition (ECR-CVD) onto highly doped silicon substrates. The as-grown graphene electrodes were employed in a symmetric micro-supercapacitor using an aprotic ionic liquid [N-methyl-N-propylpyrrolidinium bis(trifluoromethyl-sulfonylimide); PYR13TFSI] as electrolyte. The device was able to deliver an outstanding specific capacitance value of 2 mF cm(-2), a power density value of 4 mW cm(-2) and an energy density value of 4 mu W h cm(-2) operating at a large and stable cell voltage of 4 V with a quasi-ideal capacitive behaviour. Moreover, the lifetime of the d...
The π–π interactions between graphene-based lamellar materials hinder their application in high-ener...
Power generation and storage in electronics require flexible, thin micro-electrochemical energy stor...
The capacitive performance of three-dimensional (3D) freestanding graphene macroporous material (3D-...
International audienceVertically oriented graphene nanosheets were synthesized by an alternative and...
Three-dimensional (3D) carbon nanostructures are promising architectures to improve both specific ca...
International audienceCompact graphene films were prepared and electrochemically tested at various t...
This work describes the development and performance of a symmetric micro-supercapacitor made of nano...
Interfacial integration of a shape-engineered electrode with a strongly bonded current collector is ...
A graphene-based supercapacitor electrode suitable for ionic liquid electrolytes was designed and pr...
The need to store and use energy on diverse scales in a modern technological society necessitates th...
We report a high-performance supercapacitor incorporating a poly(ionic liquid) modified reduced; gra...
There are several advantages to developing electrochemical double-layer capacitors (EDLC) or superca...
This thesis first aims at developing an electrochemical approach for low temperature, simple, and co...
The ElectroGraph project follows an integrated, technology driven approach in development of novel m...
International audienceElectrolyte composition is a crucial factor determining the capacitive propert...
The π–π interactions between graphene-based lamellar materials hinder their application in high-ener...
Power generation and storage in electronics require flexible, thin micro-electrochemical energy stor...
The capacitive performance of three-dimensional (3D) freestanding graphene macroporous material (3D-...
International audienceVertically oriented graphene nanosheets were synthesized by an alternative and...
Three-dimensional (3D) carbon nanostructures are promising architectures to improve both specific ca...
International audienceCompact graphene films were prepared and electrochemically tested at various t...
This work describes the development and performance of a symmetric micro-supercapacitor made of nano...
Interfacial integration of a shape-engineered electrode with a strongly bonded current collector is ...
A graphene-based supercapacitor electrode suitable for ionic liquid electrolytes was designed and pr...
The need to store and use energy on diverse scales in a modern technological society necessitates th...
We report a high-performance supercapacitor incorporating a poly(ionic liquid) modified reduced; gra...
There are several advantages to developing electrochemical double-layer capacitors (EDLC) or superca...
This thesis first aims at developing an electrochemical approach for low temperature, simple, and co...
The ElectroGraph project follows an integrated, technology driven approach in development of novel m...
International audienceElectrolyte composition is a crucial factor determining the capacitive propert...
The π–π interactions between graphene-based lamellar materials hinder their application in high-ener...
Power generation and storage in electronics require flexible, thin micro-electrochemical energy stor...
The capacitive performance of three-dimensional (3D) freestanding graphene macroporous material (3D-...