A series of flexible, lightweight, and highly conductive cellulose nanopapers were fabricated through in situ polymerization of aniline monomer on to cellulose nanofibers with a rationale for attenuating electromagnetic radiations within 8.2–12.4 GHz (X band). The demonstrated paper exhibits good conductivity due to the formation of a continuous coating of polyaniline (PANI) over the cellulose nanofibers (CNF) during in situ polymerization, which is evident from scanning electron microscopy, Fourier transform infrared spectroscopy, and X-ray diffraction analysis. The free hydroxyl groups on the surface of nanocellulose fibers promptly form intermolecular hydrogen bonding with PANI, which plays a vital role in shielding electromagnetic radia...
Bacterial cellulose/polyaniline (BC/PANI) nanocomposites display many potential applications in vari...
Cellulose nanofiber/polyaniline (CNF/PANI) composites films were synthesized through in situ polymer...
Cellulose nanofibril (CNF) substrates that are inexpensive, biodegradable, and quickly incinerable, ...
A superior electrical conductivity of 38.5 S/cm and an electromagnetic shielding (EMS) effectiveness...
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...
Abstract Polyaniline nanofibers and their composite with graphite have been synthesized by a simple...
Development of new greener material for conducting paper is sought for applications such as security...
Development of new greener material for conducting paper is sought for applications such as security...
Development of new greener material for conducting paper is sought for applications such as security...
Uniformly dispersing silver nanowires (AgNWs) in polymer matrices is of paramount importance for dev...
Flexible electromagnetic interference (EMI) shielding materials are in urgent need in the flexible a...
Combining highly conducting one-dimensional nanostructures of polypyrrole with cellulose nanofibers ...
Development of new greener material for conducting paper is sought for applications such as security...
The search for materials from renewable sources has always aroused great interest from the scientifi...
Bacterial cellulose/polyaniline (BC/PANI) nanocomposites display many potential applications in vari...
Cellulose nanofiber/polyaniline (CNF/PANI) composites films were synthesized through in situ polymer...
Cellulose nanofibril (CNF) substrates that are inexpensive, biodegradable, and quickly incinerable, ...
A superior electrical conductivity of 38.5 S/cm and an electromagnetic shielding (EMS) effectiveness...
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...
Abstract Polyaniline nanofibers and their composite with graphite have been synthesized by a simple...
Development of new greener material for conducting paper is sought for applications such as security...
Development of new greener material for conducting paper is sought for applications such as security...
Development of new greener material for conducting paper is sought for applications such as security...
Uniformly dispersing silver nanowires (AgNWs) in polymer matrices is of paramount importance for dev...
Flexible electromagnetic interference (EMI) shielding materials are in urgent need in the flexible a...
Combining highly conducting one-dimensional nanostructures of polypyrrole with cellulose nanofibers ...
Development of new greener material for conducting paper is sought for applications such as security...
The search for materials from renewable sources has always aroused great interest from the scientifi...
Bacterial cellulose/polyaniline (BC/PANI) nanocomposites display many potential applications in vari...
Cellulose nanofiber/polyaniline (CNF/PANI) composites films were synthesized through in situ polymer...
Cellulose nanofibril (CNF) substrates that are inexpensive, biodegradable, and quickly incinerable, ...