EP1010733A2

Polymer composition for coatings with high refractivity conductivity and transparency

Abstract

Disclosed is a polymer composition for coatings with high refractivity, conductivity and transparency. The composition comprises 2-20 weight % of an aqueous polythiophene-based conductive polymer solution having a solid content of 1.2-1.5 weight %; 0.5-20 weight % of a highly refractive, inorganic sol solution having a solid content of 14-16 weight %; 50-97.4 weight % of an alcohol containing 1-3 carbon atoms; 0.1-10 weight % of an amide solvent; 0.005-0.1 weight % of a water- or an alcohol-soluble resin binder; and 0.005-0.05 weight % of a sulfonic acid group-containing monomer dopant. The composition can be applied to CRT external glass and other transparent substrates to allow thin films which have a refractive index of 1.6-2.0, a transmittance of 90-98 % and a surface resistance of 1x103-1x108 Ω/□.

EP1010733A2, drawing sheet 1
Sheet 1 of 5

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Projected expiry passed 30 November 2019, 6.8 years ago.

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7 claims: 2 independent, 5 dependent

  1. 1
    A polymer composition for coatings with high refractivity, conductivity and transparency, comprising:2-20 weight % of an aqueous polythiophene-based conductive polymer solution having a solid content of 1.2-1.5 weight %;0.5-20 weight % of a highly refractive, inorganic sol solution having a solid content of 14-16 weight %;50-97.4 weight % of an alcohol containing 1-3 carbon atoms;0.1-10 weight % of an amide solvent;0.005-0.1 weight % of a water- or an alcohol-soluble resin binder;and 0.005-0.05 weight % of a sulfonic acid group-containing monomer dopant.
  2. 7
    A refractive, conductive, transparent thin film, prepared by spin- or spray-coating on a cathode ray tube external glass a composition comprising 2-20 weight % of an aqueous polythiophene-based conductive polymer solution having a solid content of 1.2-1.5 weight %;0.5-20 weight % of a highly refractive, inorganic sol solution having a solid content of 14-16 weight %;50-97.4 weight % of an alcohol containing 1-3 carbon atoms;0.1-10 weight % of an amide solvent;0.005-0.1 weight % of a water- or an alcohol-soluble resin binder;and 0.005-0.05 weight % of a sulfonic acid group-containing monomer dopant and by baking the coating at 150-200 °C for 0.5-1 hour, wherein the thin film has a refractive index of 1.6-2.0, a transmittance of 90-98 % and a surface resistance of 1x10 3 -1x10 8 Ω/□ .