Graphene sheets and nanoribbons are graphene-based nanostructures with different dimensions. Here, we show that these two materials can be combined to form highly porous, ultra-low density, compressible yet elastic aerogels, which can be used as efficient adsorbents and supercapacitor electrodes. The pore walls consist of stacked graphene sheets embedded with uniformly distributed thick nanoribbons unzipped from multi-walled carbon nanotubes as effective reinforcing skeletons. Owing to the large pore-size, robust and stable structure, and the nanoribbon-adhered pore walls, these hybrid aerogels show very large adsorption capacity for a series of organic solvents and oils (100 to 350 times of aerogel weight), and a specific capacitance of 25...
Graphene aerogels are highly porous materials with many energy and environmental applications; tailo...
We reported a new type of graphene aerogel–nickel foam (GA@NF) hybrid material prepared through a fa...
With increasing energy demand driving the need for eco-friendly and efficient energy storage technol...
Graphene nanoribbon aerogels are fabricated by directly unzipping multiwalled carbon nanotube sponge...
The self-restacking of graphene nanosheets inevitably compromises the electrochemical performance of...
Graphene-based supercapacitors and related flexible devices have attracted great attention because o...
Energy storage devices are receiving extensive attention in recent years due to the increasing deman...
Energy storage devices are receiving extensive attention in recent years due to the increasing deman...
Graphene oxide (GO) nanosheets can be assembled into multifunctional three-dimensional graphene aero...
To resist the energy crisis and increasingly environmental pollution, there is a great demand for th...
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...
To resist the energy crisis and increasingly environmental pollution, there is a great demand for th...
Graphene is an atomically thin, two-dimensional (2D) carbon material that offers a unique combinatio...
Carbon nanomaterial-based aerogels have attracted significant interests from both academia and indus...
Graphene aerogels are highly porous materials with many energy and environmental applications; tailo...
We reported a new type of graphene aerogel–nickel foam (GA@NF) hybrid material prepared through a fa...
With increasing energy demand driving the need for eco-friendly and efficient energy storage technol...
Graphene nanoribbon aerogels are fabricated by directly unzipping multiwalled carbon nanotube sponge...
The self-restacking of graphene nanosheets inevitably compromises the electrochemical performance of...
Graphene-based supercapacitors and related flexible devices have attracted great attention because o...
Energy storage devices are receiving extensive attention in recent years due to the increasing deman...
Energy storage devices are receiving extensive attention in recent years due to the increasing deman...
Graphene oxide (GO) nanosheets can be assembled into multifunctional three-dimensional graphene aero...
To resist the energy crisis and increasingly environmental pollution, there is a great demand for th...
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...
To resist the energy crisis and increasingly environmental pollution, there is a great demand for th...
Graphene is an atomically thin, two-dimensional (2D) carbon material that offers a unique combinatio...
Carbon nanomaterial-based aerogels have attracted significant interests from both academia and indus...
Graphene aerogels are highly porous materials with many energy and environmental applications; tailo...
We reported a new type of graphene aerogel–nickel foam (GA@NF) hybrid material prepared through a fa...
With increasing energy demand driving the need for eco-friendly and efficient energy storage technol...