Three-dimensional vertically aligned graphene (3DVAG) was prepared by a unidirectional freezing method, and its electrochemical performances were evaluated as electrode materials for zinc−ion hybrid supercapacitors (ZHSCs). The prepared 3DVAG has a vertically ordered channel structure with a diameter of about 20−30 μm and a length stretching about hundreds of microns. Compared with the random structure of reduced graphene oxide (3DrGO), the vertical structure of 3DVAG in a three−electrode system showed higher specific capacitance, faster ion diffusion, and better rate performance. The specific capacitance of 3DVAG reached 66.6 F·g−1 and the rate performance reached 92.2%. The constructed 3DVAG zinc−ion hybrid supercapacitor also showed exce...
International audienceFew layer graphene/carbon (FLG/C) composites are prepared directly via the rap...
High surface area electrode materials are of interest for a wide range of potential applications suc...
Three-dimensional (3D) graphene was synthesized by chemical vapour deposition with nickel foam as a ...
A three-dimensional vertical-aligned graphene-polydopamine electrode (PDA@3DVAG) composite with vert...
Graphene has been studied extensively owing to its unique two dimension structure, high conductivity...
Three-dimensional (3D) carbon nanostructures are promising architectures to improve both specific ca...
A facile and ultrafast method for geometry controllable and vertically transformative 3D graphene ar...
The overarching objective of this project is to investigate a novel concept of three - dimensional (...
© 2017 American Chemical Society. The efficient charge accumulation of an ideal supercapacitor elect...
A high-surface-area conductive cellular carbon monolith is highly desired as the optimal electrode f...
Vertical graphene (VG) sheets, which consist of few-layer graphene vertically aligned on the substra...
Supercapacitors with porous carbon structures have high energy storage capacity. However, the porous...
A facile and ultrafast method for geometry controllable and vertically transformative 3D graphene ar...
An electrochemical technique is developed to activate graphene oxide (GO) at relatively low temperat...
Due to their unique structure and outstanding intrinsic physical properties such as extraordinarily ...
International audienceFew layer graphene/carbon (FLG/C) composites are prepared directly via the rap...
High surface area electrode materials are of interest for a wide range of potential applications suc...
Three-dimensional (3D) graphene was synthesized by chemical vapour deposition with nickel foam as a ...
A three-dimensional vertical-aligned graphene-polydopamine electrode (PDA@3DVAG) composite with vert...
Graphene has been studied extensively owing to its unique two dimension structure, high conductivity...
Three-dimensional (3D) carbon nanostructures are promising architectures to improve both specific ca...
A facile and ultrafast method for geometry controllable and vertically transformative 3D graphene ar...
The overarching objective of this project is to investigate a novel concept of three - dimensional (...
© 2017 American Chemical Society. The efficient charge accumulation of an ideal supercapacitor elect...
A high-surface-area conductive cellular carbon monolith is highly desired as the optimal electrode f...
Vertical graphene (VG) sheets, which consist of few-layer graphene vertically aligned on the substra...
Supercapacitors with porous carbon structures have high energy storage capacity. However, the porous...
A facile and ultrafast method for geometry controllable and vertically transformative 3D graphene ar...
An electrochemical technique is developed to activate graphene oxide (GO) at relatively low temperat...
Due to their unique structure and outstanding intrinsic physical properties such as extraordinarily ...
International audienceFew layer graphene/carbon (FLG/C) composites are prepared directly via the rap...
High surface area electrode materials are of interest for a wide range of potential applications suc...
Three-dimensional (3D) graphene was synthesized by chemical vapour deposition with nickel foam as a ...