Green electronics based on biodegradable polymers have received considerable attention as a solution to electronic waste (e-waste). Herein, we describe an efficient approach to constructing green conductive fibers, comprising poly(3,4-ethylenedioxythiophene) (PEDOT) and regenerated cellulose (RC), via a wet-spinning process and vapor-phase polymerization (VPP). Eco-friendly RC fibers were prepared as a support layer by wet spinning, and the conductive PEDOT layers were coated onto the surface of the RC fibers by the oxidation of EDOT monomers. We demonstrated that the vapor-phase-polymerized PEDOT/RC composite fibers (PEDOT/RC-VPP) exhibited approximately 17 times higher electrical conductivity (198.2 ± 7.3 S/cm), compared with that of the ...
In this paper, we report the fabrication of highly conductive poly(3,4-ethylenedioxythiophene)-poly(...
Coming from renewable and sustainable raw materials, nanocelluloses are rapidly emerging as one of t...
Highly flexible and electrically-conductive multifunctional textiles are desirable for use in wearab...
Nanocellulose constitutes promising resources for next-generation electronics, particularly when inc...
The emergence of "green"electronics is a response to the pressing global situation where conventiona...
Organic materials have attracted considerable attention for thermoelectric (TE) applications. Given ...
In this work, high-performance fibers such as aramid (Twaron), polyamide (PA6), polyester (PET), and...
Organic electronics is the study of organic materials with electronic functionality and the applicat...
In this work, high-performance fibers such as aramid (Twaron), polyamide (PA6), polyester (PET), and...
Highly stable conducting fibers have attracted significant attention in electronic textile (e-textil...
Electrospinning process is used to generate micrometer to nanometer sized fibers to form nonwoven ma...
Fiber supercapacitors (FSCs) are attractive energy storage devices for wearable and portable electro...
Nanostructures of the conducting polymer poly(3,4-ethylenedioxythiophene) with large surface areas...
In this paper,we report the fabrication of highly conductive poly(3,4-ethylenedioxythiophene)- poly(...
Mechanically robust, flexible, and electrically conductive textiles are highly suitable for use in w...
In this paper, we report the fabrication of highly conductive poly(3,4-ethylenedioxythiophene)-poly(...
Coming from renewable and sustainable raw materials, nanocelluloses are rapidly emerging as one of t...
Highly flexible and electrically-conductive multifunctional textiles are desirable for use in wearab...
Nanocellulose constitutes promising resources for next-generation electronics, particularly when inc...
The emergence of "green"electronics is a response to the pressing global situation where conventiona...
Organic materials have attracted considerable attention for thermoelectric (TE) applications. Given ...
In this work, high-performance fibers such as aramid (Twaron), polyamide (PA6), polyester (PET), and...
Organic electronics is the study of organic materials with electronic functionality and the applicat...
In this work, high-performance fibers such as aramid (Twaron), polyamide (PA6), polyester (PET), and...
Highly stable conducting fibers have attracted significant attention in electronic textile (e-textil...
Electrospinning process is used to generate micrometer to nanometer sized fibers to form nonwoven ma...
Fiber supercapacitors (FSCs) are attractive energy storage devices for wearable and portable electro...
Nanostructures of the conducting polymer poly(3,4-ethylenedioxythiophene) with large surface areas...
In this paper,we report the fabrication of highly conductive poly(3,4-ethylenedioxythiophene)- poly(...
Mechanically robust, flexible, and electrically conductive textiles are highly suitable for use in w...
In this paper, we report the fabrication of highly conductive poly(3,4-ethylenedioxythiophene)-poly(...
Coming from renewable and sustainable raw materials, nanocelluloses are rapidly emerging as one of t...
Highly flexible and electrically-conductive multifunctional textiles are desirable for use in wearab...