EP1585371B1

Organic electroluminescence device and manufacturing method thereof

Abstract

This record has no abstract on file.

EP1585371B1, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Expired 4 April 2025, 1.5 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

43 claims: 2 independent, 41 dependent

  1. 1
    An organic electroluminescence (EL) device, comprising:a rear substrate (10, 20, 30);an organic electroluminescence element (12, 22, 32) formed on the rear substrate (10, 20, 30), said organic electroluminescence element (12, 22, 32) comprising a first electrode, an organic layer and a second electrode;a front substrate (11, 21, 31) coupled to the rear substrate (10, 20, 30) via a sealant (14, 24, 34) to seal an internal space formed by the rear substrate (10, 20, 30) and the front substrate (12, 22, 32), said internal space accommodating the organic electroluminescence element (12, 22, 32);and a transparent nanoporous oxide (13, 23, 33) layer comprising nanoporous particles disposed in the internal space, characterized in, that said transparent nanoporous oxide layer has pores having an average pore diameter of not greater than 100 nm and said nanoporous oxide particles having an average particle diameter of not greater than 100 nm.
  2. 22
    A method of manufacturing an organic electroluminescence device, comprising:preparing a front substrate (11, 21, 31) and a rear substrate (10, 20, 30) having an organic electroluminescence element (12, 22, 32) comprising a first electrode, an organic layer and a second electrode;forming a transparent nanoporous oxide layer (13, 23, 33) in an internal space formed by the rear substrate (10, 20, 30) and the front substrate (11,21,31);applying a sealant (14, 24, 34) on a peripheral portion of the organic electroluminescence element (12, 22, 32) of at least one of the rear substrate (10, 20, 30) and the front substrate (11, 21, 31);and coupling the rear substrate (10, 20, 30) and the front substrate (11, 21, 31) to each other via the sealant (14, 24, 34) to seal said internal space, wherein the step of forming the transparent nanoporous layer (13, 23, 33) comprises dispersing nanoporous oxide particles having an average particle diameter of not greater than 100 nm in a solvent and optionally acid to give a sol-state composition, coating the sol-state composition, and drying and heat-treating the coated composition.