Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Conductive Electrospun Nanofiber Mats

View through CrossRef
Conductive nanofiber mats can be used in a broad variety of applications, such as electromagnetic shielding, sensors, multifunctional textile surfaces, organic photovoltaics, or biomedicine. While nanofibers or nanofiber from pure or blended polymers can in many cases unambiguously be prepared by electrospinning, creating conductive nanofibers is often more challenging. Integration of conductive nano-fillers often needs a calcination step to evaporate the non-conductive polymer matrix which is necessary for the electrospinning process, while conductive polymers have often relatively low molecular weights and are hard to dissolve in common solvents, both factors impeding spinning them solely and making a spinning agent necessary. On the other hand, conductive coatings may disturb the desired porous structure and possibly cause problems with biocompatibility or other necessary properties of the original nanofiber mats. Here we give an overview of the most recent developments in the growing field of conductive electrospun nanofiber mats, based on electrospinning blends of spinning agents with conductive polymers or nanoparticles, alternatively applying conductive coatings, and the possible applications of such conductive electrospun nanofiber mats.
Title: Conductive Electrospun Nanofiber Mats
Description:
Conductive nanofiber mats can be used in a broad variety of applications, such as electromagnetic shielding, sensors, multifunctional textile surfaces, organic photovoltaics, or biomedicine.
While nanofibers or nanofiber from pure or blended polymers can in many cases unambiguously be prepared by electrospinning, creating conductive nanofibers is often more challenging.
Integration of conductive nano-fillers often needs a calcination step to evaporate the non-conductive polymer matrix which is necessary for the electrospinning process, while conductive polymers have often relatively low molecular weights and are hard to dissolve in common solvents, both factors impeding spinning them solely and making a spinning agent necessary.
On the other hand, conductive coatings may disturb the desired porous structure and possibly cause problems with biocompatibility or other necessary properties of the original nanofiber mats.
Here we give an overview of the most recent developments in the growing field of conductive electrospun nanofiber mats, based on electrospinning blends of spinning agents with conductive polymers or nanoparticles, alternatively applying conductive coatings, and the possible applications of such conductive electrospun nanofiber mats.

Related Results

Needleless electrospun polyacrylonitrile/konjac glucomannan nanofiber mats
Needleless electrospun polyacrylonitrile/konjac glucomannan nanofiber mats
In this study we report for the first time about the preparation of polyacrilontrile (PAN)/konjac glucomannan (KGM) nanofiber mats, needleless electrospinning from the low-toxic so...
FABRICATION OF PCL-COLLAGEN NANOFIBER USING CHLOROFORM-FORMIC ACID SOLUTION AND ITS APPLICATION AS WOUND DRESSING CANDIDATE
FABRICATION OF PCL-COLLAGEN NANOFIBER USING CHLOROFORM-FORMIC ACID SOLUTION AND ITS APPLICATION AS WOUND DRESSING CANDIDATE
In this study, polycaprolactone-collagen nanofiber was prepared with 10% w/v composition using a mixture of chloroform-formic acid. PCL was dissolved in chloroform while collagen w...
Anisotropic Characterizations of Electrospun PAN Nanofiber Mats Using Design of Experiments
Anisotropic Characterizations of Electrospun PAN Nanofiber Mats Using Design of Experiments
This paper deals with the dielectric and mechanical characterizations of polyacrylonitrile (PAN)-aligned electrospun nanofiber mats. A two factor three level full factorial experim...
REVIEW : FABRIKASI MEMBRAN BERBASIS NANOFIBER DENGAN METODE ELECTROSPINNING
REVIEW : FABRIKASI MEMBRAN BERBASIS NANOFIBER DENGAN METODE ELECTROSPINNING
AbstrakElectrospinning adalah metode yang efektif dalam fabrikasi membran berbasis nanofiber. Membran nanofiber yang dihasilkan dengan menggunakan metode electrospinning lebih ungg...
Renewable Resources and a Recycled Polymer as Raw Materials: Mats from Electrospinning of Lignocellulosic Biomass and PET Solutions
Renewable Resources and a Recycled Polymer as Raw Materials: Mats from Electrospinning of Lignocellulosic Biomass and PET Solutions
Interest in the use of renewable raw materials in the preparation of materials has been growing uninterruptedly in recent decades. The aim of this strategy is to offer alternatives...
SUSTAINABLE ANTIBACTERIAL NANOFIBRES: ELECTROSPUN CELLULOSE ACETATE FROM OIL PALM WASTE REINFORCED WITH SILVER NANOPARTICLES
SUSTAINABLE ANTIBACTERIAL NANOFIBRES: ELECTROSPUN CELLULOSE ACETATE FROM OIL PALM WASTE REINFORCED WITH SILVER NANOPARTICLES
A study on the isolation and characterization of electrospun cellulose acetate nanofibres derived from oil palm empty fruit bunches and their antibacterial properties with silver n...
Coloration of cellulose nanofibres with pigments
Coloration of cellulose nanofibres with pigments
AbstractElectrospun nanofibrous mats are popular for their wide technological applications as medical, filtration, sensing and high performance textiles. The potential for colorati...
Exploring Electrospun Nanofiber Encapsulation as an Alternative to Cryopreservation for Semen Preservation
Exploring Electrospun Nanofiber Encapsulation as an Alternative to Cryopreservation for Semen Preservation
Preservation of semen plays a crucial role in artificial insemination and livestock genetic improvement programs. Traditional cryopreservation techniques have limitations, includin...

Back to Top