In this paper,we report the fabrication of highly conductive poly(3,4-ethylenedioxythiophene)- poly(styrenesulfonate) (PEDOT:PSS)/cellulose nanofiber (CNF) nanocomposite paper with excellent flexibility through post-treatment with an organic solvent. The post-treated PEDOT:PSS/CNF porous nanocomposite papers showed a lower sulfur content, indicating the removal of residual PSS. The electrical conductivity of PEDOT:PSS/CNF porous nanocomposite paper was increased from 1.05 S/cm to 123.37 S/cm and 106.6 S/cm by post-treatment with dimethyl sulfoxide (DMSO) and ethylene glycol (EG), respectively. These values are outstanding in the development of electrically conductive CNF composites. Additionally, the highly conductive nanocomposite papers s...
Composite materials of conjugated polymers/cellulose were fabricated by incorporating different poly...
The global efforts in electrifying our society drive the demand for low-cost and sustainable energy ...
Flexible electronics have become widespread in the last decades. Due to the environmental crisis tha...
In this paper, we report the fabrication of highly conductive poly(3,4-ethylenedioxythiophene)-poly(...
Nanocellulose constitutes promising resources for next-generation electronics, particularly when inc...
Coming from renewable and sustainable raw materials, nanocelluloses are rapidly emerging as one of t...
Conductive paper materials consisting of conductive polymers and cellulose are promising for high-te...
Printed and flexible organic electronics is a steadily expanding field of research and applications....
Recent improvements in flexible electronics have increased the need to develop flexible and lightwei...
The thesis describes an investigation into the interaction between the conducting polymer and cellul...
The thesis investigates the modification of paper into an ion- and electron-conductive material, and...
Organic materials have attracted considerable attention for thermoelectric (TE) applications. Given ...
Composites of biopolymers and conducting polymers are emerging as promising candidates for a green t...
To meet the predicted increase in demand for energy storage in tomorrow's society, the development o...
Composite materials of conjugated polymers/cellulose were fabricated by incorporating different poly...
The global efforts in electrifying our society drive the demand for low-cost and sustainable energy ...
Flexible electronics have become widespread in the last decades. Due to the environmental crisis tha...
In this paper, we report the fabrication of highly conductive poly(3,4-ethylenedioxythiophene)-poly(...
Nanocellulose constitutes promising resources for next-generation electronics, particularly when inc...
Coming from renewable and sustainable raw materials, nanocelluloses are rapidly emerging as one of t...
Conductive paper materials consisting of conductive polymers and cellulose are promising for high-te...
Printed and flexible organic electronics is a steadily expanding field of research and applications....
Recent improvements in flexible electronics have increased the need to develop flexible and lightwei...
The thesis describes an investigation into the interaction between the conducting polymer and cellul...
The thesis investigates the modification of paper into an ion- and electron-conductive material, and...
Organic materials have attracted considerable attention for thermoelectric (TE) applications. Given ...
Composites of biopolymers and conducting polymers are emerging as promising candidates for a green t...
To meet the predicted increase in demand for energy storage in tomorrow's society, the development o...
Composite materials of conjugated polymers/cellulose were fabricated by incorporating different poly...
The global efforts in electrifying our society drive the demand for low-cost and sustainable energy ...
Flexible electronics have become widespread in the last decades. Due to the environmental crisis tha...