Fabrication of high-performance nanocomposites requires that the nanoscale fillers be dispersed uniformly and form a continuous network throughout the matrix. Direct infiltration of porous CNT sponges consisting of a three-dimensional nanotube scaffold may provide a possible solution to this challenge. Here, we fabricated CNT sponge nanocomposites by directly infiltrating epoxy fluid into the CNT framework while maintaining the original network structure and CNT contact, with simultaneous improvement in mechanical and electrical properties. The resulting composites have an isotropic structure with electrical resistivities of 10 to 30 Omega.cm along arbitrary directions, much higher than traditional composites by mixing random CNTs with epox...
Materials for practical smart sensor applications are attracting serious interest over last few year...
Developing flexible and deformable supercapacitor electrodes based on porous materials is of high in...
ABSTRACT: This work focuses on the development of electrically conducting porous nanocomposite struc...
Porous carbon nanotube networks represent a type of material that can achieve both structural robust...
Light-weight and high-performance electromagnetic interference (EMI)shielding epoxy nanocomposites a...
The remarkable electrical and mechanical properties of carbon nanotubes (CNTs) render CNT-reinforced...
Porous conductors with large surface-volume ratios have been applied to a variety of fields, includi...
Since electrostatic self-assembly carbon nanotubes–carbon black (CNTs–CB) composite fillers have goo...
A network of entangled multiwall carbon nanotubes and the composite consisting of filter-supported m...
We report on a new type of carbon nanotube (CNT)-polymer nanocomposite with enhanced electrical, ele...
The incorporation and uniform dispersion of carbon nanotubes (CNTs) in polymer matrix could facilita...
Carbon nanotube (CNT) aerogels and sponges are macroscopic porous materials with a unique isotropic ...
The purpose of this study was to investigate the electrical response of toughened nanocomposites sub...
Conductive nanocomposite materials for sensing applications are developed. The fabrication process p...
It is believed that the crucial step towards preparation of electrical conductive polymer–carbon nan...
Materials for practical smart sensor applications are attracting serious interest over last few year...
Developing flexible and deformable supercapacitor electrodes based on porous materials is of high in...
ABSTRACT: This work focuses on the development of electrically conducting porous nanocomposite struc...
Porous carbon nanotube networks represent a type of material that can achieve both structural robust...
Light-weight and high-performance electromagnetic interference (EMI)shielding epoxy nanocomposites a...
The remarkable electrical and mechanical properties of carbon nanotubes (CNTs) render CNT-reinforced...
Porous conductors with large surface-volume ratios have been applied to a variety of fields, includi...
Since electrostatic self-assembly carbon nanotubes–carbon black (CNTs–CB) composite fillers have goo...
A network of entangled multiwall carbon nanotubes and the composite consisting of filter-supported m...
We report on a new type of carbon nanotube (CNT)-polymer nanocomposite with enhanced electrical, ele...
The incorporation and uniform dispersion of carbon nanotubes (CNTs) in polymer matrix could facilita...
Carbon nanotube (CNT) aerogels and sponges are macroscopic porous materials with a unique isotropic ...
The purpose of this study was to investigate the electrical response of toughened nanocomposites sub...
Conductive nanocomposite materials for sensing applications are developed. The fabrication process p...
It is believed that the crucial step towards preparation of electrical conductive polymer–carbon nan...
Materials for practical smart sensor applications are attracting serious interest over last few year...
Developing flexible and deformable supercapacitor electrodes based on porous materials is of high in...
ABSTRACT: This work focuses on the development of electrically conducting porous nanocomposite struc...