The chemical polymerization of pyrrole was studied with the aim of defining the best operating conditions for obtaining conductive fabrics of synthetic fibers. Ammonium persulfate was chosen as the oxidant, and various dopants were tested. Among these, naphtalene-2,6-disulfonic acid disodium salt enabled the lowest surface resistivity to be reached. Hence, several kinetic runs were performed to explain the influence of some operating conditions as oxidant concentration and temperature. A pseudo-first-order kinetic equation was derived, and the reaction rates were found to be practically unaffected by the presence of the textile substrate. Pyrrole polymerization was faster than adsorption of the monomer, suggesting the hypothesis of fast ...
Electrically conductive fabrics were produced by deposition of a thin film of doped polypyrrole on t...
Electrically conductive fabrics were produced by deposition of a thin film of doped polypyrrole on t...
Although conducting polymers have various potential applications, lack of solubility is an impedimen...
The present paper reports a novel approach for in situ polymerization of polypyrrole on cotton fabri...
In a four-step method starting from pyrrole, the synthesis of 3-iso-butylpyrrole and 3-iso-pentylpyr...
In the past, semiconductive textiles including yarns and fabrics, have been produced by incorporatin...
Conductive textile yarns were prepared by a continuous vapor polymerization method; the application ...
Electrically conductive textiles based on polypyrrole thin films deposited on fibre substrates are h...
Wool fabrics with conventional properties and performances were transformed into electrically conduc...
The surface resistance of polypyrrole (PPy)-coated polyester fabrics was investigated and related to...
The effects of pyrrole, anthraquinone-2-sulphonic acid (AQSA) and iron(III) chloride (FeCl3) concent...
Wool yarns were coated with conducting polypyrrole by chemical synthesis methods. Polymerization of ...
135-138Cotton fabrics have been treated with polypyrrole by oxidative in situ chemical polymerizati...
Electrically conductive fabrics were produced by deposition of a thin film of doped polypyrrole on t...
Electrically conductive fabrics were produced by deposition of a thin film of doped polypyrrole on t...
Electrically conductive fabrics were produced by deposition of a thin film of doped polypyrrole on t...
Electrically conductive fabrics were produced by deposition of a thin film of doped polypyrrole on t...
Although conducting polymers have various potential applications, lack of solubility is an impedimen...
The present paper reports a novel approach for in situ polymerization of polypyrrole on cotton fabri...
In a four-step method starting from pyrrole, the synthesis of 3-iso-butylpyrrole and 3-iso-pentylpyr...
In the past, semiconductive textiles including yarns and fabrics, have been produced by incorporatin...
Conductive textile yarns were prepared by a continuous vapor polymerization method; the application ...
Electrically conductive textiles based on polypyrrole thin films deposited on fibre substrates are h...
Wool fabrics with conventional properties and performances were transformed into electrically conduc...
The surface resistance of polypyrrole (PPy)-coated polyester fabrics was investigated and related to...
The effects of pyrrole, anthraquinone-2-sulphonic acid (AQSA) and iron(III) chloride (FeCl3) concent...
Wool yarns were coated with conducting polypyrrole by chemical synthesis methods. Polymerization of ...
135-138Cotton fabrics have been treated with polypyrrole by oxidative in situ chemical polymerizati...
Electrically conductive fabrics were produced by deposition of a thin film of doped polypyrrole on t...
Electrically conductive fabrics were produced by deposition of a thin film of doped polypyrrole on t...
Electrically conductive fabrics were produced by deposition of a thin film of doped polypyrrole on t...
Electrically conductive fabrics were produced by deposition of a thin film of doped polypyrrole on t...
Although conducting polymers have various potential applications, lack of solubility is an impedimen...