Vertical graphene (VG) sheets, which consist of few-layer graphene vertically aligned on the substrate with three dimensionally interconnected porous network, make them become one of the most promising energy storage electrodes, especially for SCs. Nevertheless, the intrinsic hydrophobic nature of pristine VG sheets severely limited its application in aqueous SCs. Here, electrochemical oxidation strategy is adopted to increase the hydrophilicity of VG sheets by introducing oxygen functional groups so that the aqueous electrolyte can fully be in contact with the VG sheets to improve charge storage performance. Our work demonstrated that the introduction of oxygen functional groups not only greatly improved the hydrophilicity but also generat...
Three-dimensional functionalized graphene monoliths (3DFGMs) have attracted intensive attention as e...
Supercapacitor energy storage devices recently garnered considerable attention due to their cost-eff...
We demonstrated the fabrication of functionalized graphene nanosheets <i>via</i> low temperature (30...
Vertical Graphene Nanosheets (VGN) is one of the most promising energy storage materials in particul...
Graphene-based materials are highly desirable for supercapacitors, but vary considerably in reported...
The utilization of vertical graphene nanosheet (VGN) electrodes for energy storage in supercapacitor...
In graphene-based materials, the energy storage capacity is usually improved by rich porous structur...
Vertical graphene nanosheets (VGNS) hold great promise for high-performance supercapacitors owing to...
Supercapacitors, otherwise known as electrical double layer capacitors, are a new type of electroche...
Present state-of-the-art graphene-based electrodes for supercapacitors remain far from commercial re...
Electrochemical capacitors, also known as supercapacitors, are attractive energy storage devices wit...
Sodium‐ion capacitors (SICs) can effectively combine high energy density with high power density, an...
An acid-assisted ultrarapid thermal strategy is developed for constructing specifically functionaliz...
Graphene and carbon nanotubes (CNTs) are attractive electrode materials for supercapacitors. However...
Supercapacitors with porous carbon structures have high energy storage capacity. However, the porous...
Three-dimensional functionalized graphene monoliths (3DFGMs) have attracted intensive attention as e...
Supercapacitor energy storage devices recently garnered considerable attention due to their cost-eff...
We demonstrated the fabrication of functionalized graphene nanosheets <i>via</i> low temperature (30...
Vertical Graphene Nanosheets (VGN) is one of the most promising energy storage materials in particul...
Graphene-based materials are highly desirable for supercapacitors, but vary considerably in reported...
The utilization of vertical graphene nanosheet (VGN) electrodes for energy storage in supercapacitor...
In graphene-based materials, the energy storage capacity is usually improved by rich porous structur...
Vertical graphene nanosheets (VGNS) hold great promise for high-performance supercapacitors owing to...
Supercapacitors, otherwise known as electrical double layer capacitors, are a new type of electroche...
Present state-of-the-art graphene-based electrodes for supercapacitors remain far from commercial re...
Electrochemical capacitors, also known as supercapacitors, are attractive energy storage devices wit...
Sodium‐ion capacitors (SICs) can effectively combine high energy density with high power density, an...
An acid-assisted ultrarapid thermal strategy is developed for constructing specifically functionaliz...
Graphene and carbon nanotubes (CNTs) are attractive electrode materials for supercapacitors. However...
Supercapacitors with porous carbon structures have high energy storage capacity. However, the porous...
Three-dimensional functionalized graphene monoliths (3DFGMs) have attracted intensive attention as e...
Supercapacitor energy storage devices recently garnered considerable attention due to their cost-eff...
We demonstrated the fabrication of functionalized graphene nanosheets <i>via</i> low temperature (30...