Porous materials such as foams, sponges and aerogels typically exhibit large energy dissipation during deformation, resulting in structural weakening and incomplete recovery. Here, we adopted a vapor deposition method to introduce a uniform amorphous carbon (AC) coating with controlled thickness throughout the porous network, on the surface of individual carbon nanotubes (CNTs) as well as their junctions, forming AC-CNT sponges. The AC-CNT sponges show enhanced mechanical properties (compressive strength, modulus), and in particular, significantly narrowed stress-strain loops with small energy loss coefficients compared with previous CNT or graphene-based aerogels typically having large hysteresis. Mechanism study has revealed several impor...
DoctorAssembling individual carbon nanotubes (CNTs) into a long CNT fiber provides a promising way t...
Self-assembled porous nanomaterials are potential candidates for applications such as filtration, ad...
Single wall carbon nanotubes (SWCNTs) show a variety of unparalleled properties such as high electri...
Carbon nanotube (CNT) aerogels and sponges are macroscopic porous materials with a unique isotropic ...
Carbon nanotube (CNT) and graphene-based sponges and aerogels have an isotropic porous structure and...
Efficient assembly of carbon nanotube (CNT) based cellular solids with appropriate structure is the ...
Carbon nanotube (CNT) and graphene-based sponges and aerogels have an isotropic porous structure and...
Porous carbon nanotube networks represent a type of material that can achieve both structural robust...
The porous nature of carbon nanotube (CNT) arrays allows for the unique opportunity to tailor their ...
Developing flexible and deformable supercapacitor electrodes based on porous materials is of high in...
We describe the super compressible and highly recoverable response of bucky sponges as they are stru...
Recently, laser-assisted chemical vapor deposition has been used to synthesize a free-standing, cont...
AbstractCarbon nanotubes (CNTs) consist of a graphene sheet (two-dimensional hexagonal lattices of c...
Carbon nanotubes have the potential to construct highly compressible and elastic macroscopic structu...
International audienceA bio-inspired method involving the deposition of a carbon nanolayer after the...
DoctorAssembling individual carbon nanotubes (CNTs) into a long CNT fiber provides a promising way t...
Self-assembled porous nanomaterials are potential candidates for applications such as filtration, ad...
Single wall carbon nanotubes (SWCNTs) show a variety of unparalleled properties such as high electri...
Carbon nanotube (CNT) aerogels and sponges are macroscopic porous materials with a unique isotropic ...
Carbon nanotube (CNT) and graphene-based sponges and aerogels have an isotropic porous structure and...
Efficient assembly of carbon nanotube (CNT) based cellular solids with appropriate structure is the ...
Carbon nanotube (CNT) and graphene-based sponges and aerogels have an isotropic porous structure and...
Porous carbon nanotube networks represent a type of material that can achieve both structural robust...
The porous nature of carbon nanotube (CNT) arrays allows for the unique opportunity to tailor their ...
Developing flexible and deformable supercapacitor electrodes based on porous materials is of high in...
We describe the super compressible and highly recoverable response of bucky sponges as they are stru...
Recently, laser-assisted chemical vapor deposition has been used to synthesize a free-standing, cont...
AbstractCarbon nanotubes (CNTs) consist of a graphene sheet (two-dimensional hexagonal lattices of c...
Carbon nanotubes have the potential to construct highly compressible and elastic macroscopic structu...
International audienceA bio-inspired method involving the deposition of a carbon nanolayer after the...
DoctorAssembling individual carbon nanotubes (CNTs) into a long CNT fiber provides a promising way t...
Self-assembled porous nanomaterials are potential candidates for applications such as filtration, ad...
Single wall carbon nanotubes (SWCNTs) show a variety of unparalleled properties such as high electri...