AbstractIn this paper we present results concerning the processing and characterization of polyaniline microfibers obtained by the electrospinning technique. The electrospinning technique is used to produce micro and nano fibers, this technique uses an electric field to stretch the jet of the polymer and thus produce fibers, which are deposited on a collecting plate. The continuous fibers production will form some like a membrane. The fibers provide a large surface area due to their small diameter, therefore, interesting commercial and scientific application could be considered. In this study, fibers from a solution made of polyethylene oxide and polyaniline were obtained. Chloroform was used as solvents for these polymers. The fibers obtai...
Polyaniline (PANI) nanofibers are drawing a great deal of interest from academia and industry due to...
Polyaniline (PAni) is a conducting polymer that has shown promise in the field of composite sensors,...
Polyaniline (PANI) nanofibers are drawing a great deal of interest from academia and industry due to...
AbstractIn this paper we present results concerning the processing and characterization of polyanili...
Nanofibers of conducting polymers, as polyaniline (PANI), have received a great deal of attention by...
Electrospinning is a process of production fibers with diameters ranging from the submicron down to ...
Polyaniline doped with CSA / PEO conductive nanofibres were produced by electrospinning. The electro...
Submicrometer fibers of polyaniline (PAni) doped with (+)-camphor-10-sulfonic acid (HCSA) and blende...
Electrospinning is a process to produce the fibers in nano scale by injecting the polymer solution t...
Electrospinning is a process to produce the fibers in nano scale by injecting the polymer solution t...
Electrospun polyaniline fibers synthesized by green route P. Fronteraa, M. Lo Faroc, C .Busaccaa, P...
Electrospinning is an inexpensive technique that is used to produce nanofibers for a variety of appl...
Electrospinning is a process by which a polymer solution or melt can be spun into submicron fibers b...
Polyaniline (PANI) nanofibers are drawing a great deal of interest from academia and industry due to...
Electrospinning is a process by which a polymer solution or melt can be spun into submicron fibers b...
Polyaniline (PANI) nanofibers are drawing a great deal of interest from academia and industry due to...
Polyaniline (PAni) is a conducting polymer that has shown promise in the field of composite sensors,...
Polyaniline (PANI) nanofibers are drawing a great deal of interest from academia and industry due to...
AbstractIn this paper we present results concerning the processing and characterization of polyanili...
Nanofibers of conducting polymers, as polyaniline (PANI), have received a great deal of attention by...
Electrospinning is a process of production fibers with diameters ranging from the submicron down to ...
Polyaniline doped with CSA / PEO conductive nanofibres were produced by electrospinning. The electro...
Submicrometer fibers of polyaniline (PAni) doped with (+)-camphor-10-sulfonic acid (HCSA) and blende...
Electrospinning is a process to produce the fibers in nano scale by injecting the polymer solution t...
Electrospinning is a process to produce the fibers in nano scale by injecting the polymer solution t...
Electrospun polyaniline fibers synthesized by green route P. Fronteraa, M. Lo Faroc, C .Busaccaa, P...
Electrospinning is an inexpensive technique that is used to produce nanofibers for a variety of appl...
Electrospinning is a process by which a polymer solution or melt can be spun into submicron fibers b...
Polyaniline (PANI) nanofibers are drawing a great deal of interest from academia and industry due to...
Electrospinning is a process by which a polymer solution or melt can be spun into submicron fibers b...
Polyaniline (PANI) nanofibers are drawing a great deal of interest from academia and industry due to...
Polyaniline (PAni) is a conducting polymer that has shown promise in the field of composite sensors,...
Polyaniline (PANI) nanofibers are drawing a great deal of interest from academia and industry due to...