EP1518281B1

Buffer layers for organic electroluminescent devices and methods of manufacture and use

Abstract

Organic electroluminescent device can be formed with multiple layers including an electrode, an emission layer, and a buffer layer. The emission layer includes a light emitting material. The buffer layer is disposed between and in electrical communication with the electrode and the emission layer and includes a triarylamine hole transport material and an electron acceptor material. The buffer layer optionally includes one or more of a) a polymeric binder, b) a color converting material, and c) light scattering particles. The buffer layer can also be formed using a polymeric hole transport material having a plurality of triarylamine moieties.

EP1518281B1, drawing sheet 1
Sheet 1 of 31

Term

Term ended

Expired 7 May 2023, 3.4 years ago.

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

19 claims: 3 independent, 16 dependent

  1. 1
    An electroluminescent device comprising:an electrode (252);an emission layer (256) comprising a light emitting material;and a buffer layer (254) disposed between and in electrical communication with the electrode (252) and the emission layer (256), wherein the buffer layer (254) comprises a triarylamine hole transport material, characterized in that the buffer layer further comprises an electron acceptor material.
  2. 18
    A method of making an electroluminescent device comprising:forming an electrode (252);coating a buffer layer (254) from solution over the electrode (252), the buffer layer (254) comprising a triarylamine hole transport material and an electron acceptor material;and disposing an emission layer (256) over the buffer layer (254), wherein the electrode (252), buffer layer (254), and emission layer (256) are in electrical communication and the emission layer (256) comprises a light emitting material.
  3. 19
    A method of making an electroluminescent device comprising:forming a buffer layer (254) on a donor substrate, the buffer layer (254) comprising a triarylamine hole transport material and an electron acceptor material;forming an electrode (252) on a receptor substrate (250);selectively thermally transferring a portion of the buffer layer (254) onto the receptor substrate (250) and in electrical communication with the electrode (252);and disposing an emission layer (256) over the portion of the buffer layer (254) that was selectively thermally transferred onto the receptor substrate (250).