Designing a functional filler in a polymer matrix for effective electromagnetic interference (EMI) shielding and flame retardancy is of great importance in electronic devices. Achieving optimized distribution of fillers in polymer to build a conductive network for EMI shielding and intact barrier for flame retardancy is still a great challenge since the reported fillers usually exist as a disorder or even aggregation state. Herein, a porous carbon nanotube (CNT) bridged MXene (MXene/CNT) skeleton with electrical continuity and barrier integrity was designed by using a facile freeze-drying method. Benefiting from the rich hierarchical pores and excellent conductivity of MXene/CNT, the obtained MXene/CNT supported epoxy (EP) composite exhibit...
Porous conductive polymer composites (CPCs) with lower density and high performance are more favorab...
MXenes, carbon nanotubes, and nanoparticles are attractive candidates for electromagnetic interferen...
A suitable polymer matrix and well dispersed conducting fillers forming an electrically conducting n...
In this work, 3D highly electrically conductive cellulose nanofibers (CNF)/Ti3C2Tx MXene aerogels (C...
Light-weight and high-performance electromagnetic interference (EMI)shielding epoxy nanocomposites a...
In this letter, we report preparation of strongly anchored multiwall carbon nanotubes (MWCNTs) carbo...
Absorption-dominated electromagnetic interference (EMI) shielding is attained by improving impedance...
Multiwalled carbon nanotube/polymer composites with aligned and isotropic micropores are constructed...
The growth of the application of electronic devices has created a new form of pollution known as noi...
We report on a new type of carbon nanotube (CNT)-polymer nanocomposite with enhanced electrical, ele...
Lightweight polymer-based nanostructured aerogels are crucial for electromagnetic interference (EMI)...
[[abstract]]In this paper, carbon nanotubes were used as the reinforcements in the polymer composite...
This paper describes for the first time a facile, scalable and commercially viable melt blending app...
To address the practical application challenges of conductive polymer composites (CPCs) in portable ...
Development of high-<i>k</i> composites with low dielectric loss and good flame retardancy is still ...
Porous conductive polymer composites (CPCs) with lower density and high performance are more favorab...
MXenes, carbon nanotubes, and nanoparticles are attractive candidates for electromagnetic interferen...
A suitable polymer matrix and well dispersed conducting fillers forming an electrically conducting n...
In this work, 3D highly electrically conductive cellulose nanofibers (CNF)/Ti3C2Tx MXene aerogels (C...
Light-weight and high-performance electromagnetic interference (EMI)shielding epoxy nanocomposites a...
In this letter, we report preparation of strongly anchored multiwall carbon nanotubes (MWCNTs) carbo...
Absorption-dominated electromagnetic interference (EMI) shielding is attained by improving impedance...
Multiwalled carbon nanotube/polymer composites with aligned and isotropic micropores are constructed...
The growth of the application of electronic devices has created a new form of pollution known as noi...
We report on a new type of carbon nanotube (CNT)-polymer nanocomposite with enhanced electrical, ele...
Lightweight polymer-based nanostructured aerogels are crucial for electromagnetic interference (EMI)...
[[abstract]]In this paper, carbon nanotubes were used as the reinforcements in the polymer composite...
This paper describes for the first time a facile, scalable and commercially viable melt blending app...
To address the practical application challenges of conductive polymer composites (CPCs) in portable ...
Development of high-<i>k</i> composites with low dielectric loss and good flame retardancy is still ...
Porous conductive polymer composites (CPCs) with lower density and high performance are more favorab...
MXenes, carbon nanotubes, and nanoparticles are attractive candidates for electromagnetic interferen...
A suitable polymer matrix and well dispersed conducting fillers forming an electrically conducting n...