Porous carbon nanotube networks represent a type of material that can achieve both structural robustness and high flexibility. We demonstrate here controlled synthesis of soft to hard sponges with densities ranging from 5 to 25 mg/cm(3), while retaining a porosity of >99%. The stable sponge-like structure allows excellent compressibility tunable up to 90% volume shrinkage, and the ability to recover most of volume by free expansion. Electrical resistivity of the sponges changes linearly and reversibly after 300 cycles of large-strain compression. Nanotubes forming the three-dimensional scaffold maintain good contact and percolation during large-strain deformation, polymer infiltration, and cross-linking process, suggesting potential appl...
Macroscopic carbon nanotubes (CNTs) with uniform structures are in great demand for use in composite...
Electronics is evolving from rigid, flexible to ultimate stretchable electronics, in which active op...
Carbon nanotubes offer attractive possibilities for developing new sensors because of superior mecha...
Developing flexible and deformable supercapacitor electrodes based on porous materials is of high in...
Fabrication of high-performance nanocomposites requires that the nanoscale fillers be dispersed unif...
Porous conductors with large surface-volume ratios have been applied to a variety of fields, includi...
Efficient assembly of carbon nanotube (CNT) based cellular solids with appropriate structure is the ...
Carbon nanotube (CNT) aerogels and sponges are macroscopic porous materials with a unique isotropic ...
In this work a novel top-down approach for the synthesis of macroporous PDMS (mpPDMS) sponges decora...
Conductive polymer (CP) nanotubes are fascinating nanostructures with high electrical conductivity, ...
Conductive polymer (CP) nanotubes are fascinating nanostructures with high electrical conductivity, ...
Porous materials such as foams, sponges and aerogels typically exhibit large energy dissipation duri...
Stress-responsive, highly flexible, and breathable nanocomposite sponges show an electrical conducti...
Soft conductive materials should enable large deformation while keeping high electrical conductivity...
In this work a novel top-down approach for the synthesis of macroporous PDMS (mpPDMS) sponges decora...
Macroscopic carbon nanotubes (CNTs) with uniform structures are in great demand for use in composite...
Electronics is evolving from rigid, flexible to ultimate stretchable electronics, in which active op...
Carbon nanotubes offer attractive possibilities for developing new sensors because of superior mecha...
Developing flexible and deformable supercapacitor electrodes based on porous materials is of high in...
Fabrication of high-performance nanocomposites requires that the nanoscale fillers be dispersed unif...
Porous conductors with large surface-volume ratios have been applied to a variety of fields, includi...
Efficient assembly of carbon nanotube (CNT) based cellular solids with appropriate structure is the ...
Carbon nanotube (CNT) aerogels and sponges are macroscopic porous materials with a unique isotropic ...
In this work a novel top-down approach for the synthesis of macroporous PDMS (mpPDMS) sponges decora...
Conductive polymer (CP) nanotubes are fascinating nanostructures with high electrical conductivity, ...
Conductive polymer (CP) nanotubes are fascinating nanostructures with high electrical conductivity, ...
Porous materials such as foams, sponges and aerogels typically exhibit large energy dissipation duri...
Stress-responsive, highly flexible, and breathable nanocomposite sponges show an electrical conducti...
Soft conductive materials should enable large deformation while keeping high electrical conductivity...
In this work a novel top-down approach for the synthesis of macroporous PDMS (mpPDMS) sponges decora...
Macroscopic carbon nanotubes (CNTs) with uniform structures are in great demand for use in composite...
Electronics is evolving from rigid, flexible to ultimate stretchable electronics, in which active op...
Carbon nanotubes offer attractive possibilities for developing new sensors because of superior mecha...