Graphene-based supercapacitors and related flexible devices have attracted great attention because of the increasing demands in the energy storage. As promising three-dimensional (3D) nanostructures in the supercapacitor electrodes, graphene-based aerogels have been paid dramatic attention recently, and numerous methods have been developed for enhancing their performance in energy storage. In this study, an exclusive strategy is presented toward directly in situ growing reduced graphene oxide (RGO) aerogels inside the 3D porous carbon fabrics for engineering the interfaces of the resulting binary 3D architectures. Such unique architectures have shown various advantages in the improvements of the nanostructures and chemical compositions, all...
Carbon aerogels prepared from low-cost renewable resources are promising electrode materials for fut...
Carbon aerogels prepared from low-cost renewable resources are promising electrode materials for fut...
Carbon aerogels prepared from low-cost renewable resources are promising electrode materials for fut...
Graphene is an atomically thin, two-dimensional (2D) carbon material that offers a unique combinatio...
Graphene is an atomically thin, two-dimensional (2D) carbon material that offers a unique combinatio...
Graphene is an atomically thin, two-dimensional (2D) carbon material that offers a unique combinatio...
The self-restacking of graphene nanosheets inevitably compromises the electrochemical performance of...
A three-dimensional reduced graphene oxide/nickel-cobalt sulfide (RGO/NiCo2S4) aerogel was fabricate...
We reported a new type of graphene aerogel–nickel foam (GA@NF) hybrid material prepared through a fa...
AbstractThree dimensional (3D) graphene-based architectures such as 3D graphene-based hydrogels, aer...
ArticleThree dimensional (3D) graphene-based architectures such as 3D graphene-based hydrogels, aero...
1 figure.-- Abstract of the work presented at the NanoteC19 conference, International Conference on ...
Graphene oxide (GO) nanosheets can be assembled into multifunctional three-dimensional graphene aero...
Nitrogen-doped graphene-based aerogels with three levels of hierarchically organized pores were prep...
Graphene sheets and nanoribbons are graphene-based nanostructures with different dimensions. Here, w...
Carbon aerogels prepared from low-cost renewable resources are promising electrode materials for fut...
Carbon aerogels prepared from low-cost renewable resources are promising electrode materials for fut...
Carbon aerogels prepared from low-cost renewable resources are promising electrode materials for fut...
Graphene is an atomically thin, two-dimensional (2D) carbon material that offers a unique combinatio...
Graphene is an atomically thin, two-dimensional (2D) carbon material that offers a unique combinatio...
Graphene is an atomically thin, two-dimensional (2D) carbon material that offers a unique combinatio...
The self-restacking of graphene nanosheets inevitably compromises the electrochemical performance of...
A three-dimensional reduced graphene oxide/nickel-cobalt sulfide (RGO/NiCo2S4) aerogel was fabricate...
We reported a new type of graphene aerogel–nickel foam (GA@NF) hybrid material prepared through a fa...
AbstractThree dimensional (3D) graphene-based architectures such as 3D graphene-based hydrogels, aer...
ArticleThree dimensional (3D) graphene-based architectures such as 3D graphene-based hydrogels, aero...
1 figure.-- Abstract of the work presented at the NanoteC19 conference, International Conference on ...
Graphene oxide (GO) nanosheets can be assembled into multifunctional three-dimensional graphene aero...
Nitrogen-doped graphene-based aerogels with three levels of hierarchically organized pores were prep...
Graphene sheets and nanoribbons are graphene-based nanostructures with different dimensions. Here, w...
Carbon aerogels prepared from low-cost renewable resources are promising electrode materials for fut...
Carbon aerogels prepared from low-cost renewable resources are promising electrode materials for fut...
Carbon aerogels prepared from low-cost renewable resources are promising electrode materials for fut...