In order to improve the mechanical performance and water resistance of water-borne conducting polyaniline film, conducting polyaniline/polyurethane-silica hybrid film was prepared in aqueous solution employing silanol-terminated polyurethane and methyltriethoxysilane as sol-gel precursors. The hybrid film showed surface resistivity of 10(8) Omega even though the conducting polyaniline loading was only 10 wt% (or 1.5 wt% of polyaniline), and the mechanical performance as well as water resistance was significantly improved, making it suitable for antistatic application. Therefore, a practical route to water-borne processing of conducting polyaniline is disclosed
Polymer blend films of polyaniline and nylon 6 were prepared from homogeneous solutions in formic ac...
The templated growth of polyaniline through porous sol–gel films on ITO substrates has been performe...
Polymers are normally used as insulators in many industrial applications due to their high resistivi...
Free-standing conductive films of organic-inorganic hybrids were prepared employing the sol-gel proc...
Water soluble conducting polyaniline with electrical conductivity of 10(-1)-10(-2) S/cm was prepared...
The electroactivity of polyaniline was extended to pH = 14 alkaline media by preparation of a novel ...
Conductive hybrids were prepared in a water/ethanol solution via the Solgel process from an inorgani...
[[abstract]]A series of polyurethane/polyaniline/silica organic/inorganic hybrids were synthesized v...
A hybrid material with a conductive organic network in an inorganic matrix has been prepared by in-s...
Aqueous conducting polyaniline dispersion was prepared employing acidic phosphate ester bearing hydr...
Poly(n-butyl methacrylate) (PBMA)-polyaniline (PANI) composite films were obtained by extrusion by u...
Nanostructured conducting polymers have been synthesized by chemical oxidative polymerization, where...
Free-standing film of polyaniline with excellent mechanical and electrical properties has been succe...
Polyaniline is one of the most studied conducting polymers and its properties have been used in many...
Waterborne polyurethane resins (WPUs) were synthesized with polytetramethylene ether glycol (PTMG), ...
Polymer blend films of polyaniline and nylon 6 were prepared from homogeneous solutions in formic ac...
The templated growth of polyaniline through porous sol–gel films on ITO substrates has been performe...
Polymers are normally used as insulators in many industrial applications due to their high resistivi...
Free-standing conductive films of organic-inorganic hybrids were prepared employing the sol-gel proc...
Water soluble conducting polyaniline with electrical conductivity of 10(-1)-10(-2) S/cm was prepared...
The electroactivity of polyaniline was extended to pH = 14 alkaline media by preparation of a novel ...
Conductive hybrids were prepared in a water/ethanol solution via the Solgel process from an inorgani...
[[abstract]]A series of polyurethane/polyaniline/silica organic/inorganic hybrids were synthesized v...
A hybrid material with a conductive organic network in an inorganic matrix has been prepared by in-s...
Aqueous conducting polyaniline dispersion was prepared employing acidic phosphate ester bearing hydr...
Poly(n-butyl methacrylate) (PBMA)-polyaniline (PANI) composite films were obtained by extrusion by u...
Nanostructured conducting polymers have been synthesized by chemical oxidative polymerization, where...
Free-standing film of polyaniline with excellent mechanical and electrical properties has been succe...
Polyaniline is one of the most studied conducting polymers and its properties have been used in many...
Waterborne polyurethane resins (WPUs) were synthesized with polytetramethylene ether glycol (PTMG), ...
Polymer blend films of polyaniline and nylon 6 were prepared from homogeneous solutions in formic ac...
The templated growth of polyaniline through porous sol–gel films on ITO substrates has been performe...
Polymers are normally used as insulators in many industrial applications due to their high resistivi...