Innovative benzidine-free PANI-based inks for electrically conducive inkjet printed devices were developed and tested and the results compared with those obtained by traditional PANI. NMR investigations evidenced the presence of quinones and phenolic groups on the backbone of the innovative PANIs that are thought being responsible for the higher solubility in DMSO. A mechanism of reaction was proposed. The numerous characterizations (NMR, UV-Vis, FTIR, XPS and electrical investigations) allowed to compare protonation level, doping level, valence band maximum for both the type of PANI. The correlation among structural properties, printability, conductivity and solubility was discussed
Conducting polymers are being widely employed in the manufacture of nanostructured sensors due to br...
The synthesis of PANI/Ag hybrid materials has been carried out via a rapid chemical oxidative, in-si...
The synthesis of PANI/Ag hybrid materials has been carried out via a rapid chemical oxidative, in-si...
Aqueous polyaniline (PANI) nanodispersions doped with dodecylbenzenesulfonic acid (DBSA) were synthe...
Low frequency negative supercapacitors and high frequency negative capacitors are realized developin...
Low frequency negative supercapacitors and high frequency negative capacitors are realized developin...
Polyaniline (PANI) is an organic polymer that has generated significant interest as an electrically ...
Polyaniline (PANI) is an organic polymer that has generated significant interest as an electrically ...
Polyaniline (PANI) is an organic polymer that has generated significant interest as an electrically ...
Polyaniline (PANI) was synthesised by oxidation polymerization starting from aniline dimer, thus avo...
With the discovery of electrically conductive polymers (ECPs) an attractive object of research has b...
Engineering applications for printed electronics demand solution processable electrically conductiv...
Engineering applications for printed electronics demand solution processable electrically conductive...
Conducting polymers are being widely employed in the manufacture of nanostructured sensors due to br...
The synthesis of PANI/Ag hybrid materials has been carried out via a rapid chemical oxidative, in-si...
Conducting polymers are being widely employed in the manufacture of nanostructured sensors due to br...
The synthesis of PANI/Ag hybrid materials has been carried out via a rapid chemical oxidative, in-si...
The synthesis of PANI/Ag hybrid materials has been carried out via a rapid chemical oxidative, in-si...
Aqueous polyaniline (PANI) nanodispersions doped with dodecylbenzenesulfonic acid (DBSA) were synthe...
Low frequency negative supercapacitors and high frequency negative capacitors are realized developin...
Low frequency negative supercapacitors and high frequency negative capacitors are realized developin...
Polyaniline (PANI) is an organic polymer that has generated significant interest as an electrically ...
Polyaniline (PANI) is an organic polymer that has generated significant interest as an electrically ...
Polyaniline (PANI) is an organic polymer that has generated significant interest as an electrically ...
Polyaniline (PANI) was synthesised by oxidation polymerization starting from aniline dimer, thus avo...
With the discovery of electrically conductive polymers (ECPs) an attractive object of research has b...
Engineering applications for printed electronics demand solution processable electrically conductiv...
Engineering applications for printed electronics demand solution processable electrically conductive...
Conducting polymers are being widely employed in the manufacture of nanostructured sensors due to br...
The synthesis of PANI/Ag hybrid materials has been carried out via a rapid chemical oxidative, in-si...
Conducting polymers are being widely employed in the manufacture of nanostructured sensors due to br...
The synthesis of PANI/Ag hybrid materials has been carried out via a rapid chemical oxidative, in-si...
The synthesis of PANI/Ag hybrid materials has been carried out via a rapid chemical oxidative, in-si...