International audienceElectromagnetic (EM) pollution is ubiquitous and has soared to a great extent in the past few decades. The use of plant sourced cellulose nanofibers to fabricate sustainable and high performance electromagnetic shielding materials is foreseen as a green solution by the electronics industry to address this unseen pollutant. In this view, we report a facile and environmentally benign strategy to synthesize ultra-light and highly conductive aerogels derived from cellulose nanofibers (CNF) decorated with polyaniline (PANI) via a simple in-situ polymerization and subsequent freeze drying process devoid of any volatile organic solvents. The obtained conductive aerogels exhibited density as low as 0.01925 g/cc with a maximum ...
The urge to develop high-speed data transfer technologies for futuristic electronic and communicatio...
In this work, 3D highly electrically conductive cellulose nanofibers (CNF)/Ti3C2Tx MXene aerogels (C...
Ultralight and mechanically robust materials with high-efficiency electromagnetic interference (EMI)...
International audienceElectromagnetic (EM) pollution is ubiquitous and has soared to a great extent ...
With the advent of newer technologies in the electronic and telecommunication sectors, the extent of...
A series of flexible, lightweight, and highly conductive cellulose nanopapers were fabricated throug...
Designing lightweight nanostructured aerogels for high‐performance electromagnetic interference (EMI...
Ambient-pressure-dried (APD) preparation of transition metal carbide/nitrides (MXene) aerogels is hi...
Designing lightweight nanostructured aerogels for high-performance electromagnetic interference (EMI...
Electromagnetic wave pollution has attracted extensive attention because of its ability to affect th...
Designing lightweight nanostructured aerogels for high-performance electromagnetic interference (EMI...
Lightweight nanostructured aerogels have attracted more and more attention for addressing emergency ...
Ambient-pressure-dried (APD) preparation of transition metal carbide/nitrides (MXene) aerogels is hi...
A superior electrical conductivity of 38.5 S/cm and an electromagnetic shielding (EMS) effectiveness...
MXenes, a large family of titanium carbides and nitrides, have emerged as potential electromagnetic ...
The urge to develop high-speed data transfer technologies for futuristic electronic and communicatio...
In this work, 3D highly electrically conductive cellulose nanofibers (CNF)/Ti3C2Tx MXene aerogels (C...
Ultralight and mechanically robust materials with high-efficiency electromagnetic interference (EMI)...
International audienceElectromagnetic (EM) pollution is ubiquitous and has soared to a great extent ...
With the advent of newer technologies in the electronic and telecommunication sectors, the extent of...
A series of flexible, lightweight, and highly conductive cellulose nanopapers were fabricated throug...
Designing lightweight nanostructured aerogels for high‐performance electromagnetic interference (EMI...
Ambient-pressure-dried (APD) preparation of transition metal carbide/nitrides (MXene) aerogels is hi...
Designing lightweight nanostructured aerogels for high-performance electromagnetic interference (EMI...
Electromagnetic wave pollution has attracted extensive attention because of its ability to affect th...
Designing lightweight nanostructured aerogels for high-performance electromagnetic interference (EMI...
Lightweight nanostructured aerogels have attracted more and more attention for addressing emergency ...
Ambient-pressure-dried (APD) preparation of transition metal carbide/nitrides (MXene) aerogels is hi...
A superior electrical conductivity of 38.5 S/cm and an electromagnetic shielding (EMS) effectiveness...
MXenes, a large family of titanium carbides and nitrides, have emerged as potential electromagnetic ...
The urge to develop high-speed data transfer technologies for futuristic electronic and communicatio...
In this work, 3D highly electrically conductive cellulose nanofibers (CNF)/Ti3C2Tx MXene aerogels (C...
Ultralight and mechanically robust materials with high-efficiency electromagnetic interference (EMI)...