Organic light emitting display device and method for manufacturing the same
An organic light-emitting display device capable of improving luminance and light extraction efficiency thereof while preventing image blur, and a method for manufacturing the same is disclosed. In accordance with the device and the method, image blur is suppressed and luminance and light-emitting efficiency are improved by forming micro-lenses on an encapsulating layer for protecting organic light-emitting elements at precise positions corresponding to the elements in a self-aligned and self-assembled manner.
1. A method for manufacturing an organic light-emitting display device, the method comprising:
forming a plurality of organic light-emitting elements on a substrate;
forming an encapsulating layer covering the plurality of organic light-emitting elements;
forming a first buffer layer on the encapsulating layer, wherein the first buffer layer is hydrophilic;
forming a second buffer layer on the first buffer layer, wherein the second buffer layer is hydrophobic and has a plurality of openings, wherein each opening in the plurality of openings overlaps with a respective organic light-emitting element in the plurality of organic light-emitting elements and exposes a corresponding portion of the first buffer layer; and
applying a hydrophilic polymer onto the second buffer layer such that a plurality of micro-lenses are respectively formed on the exposed portions of the hydrophilic first buffer layer.
2. The method of claim 1 , wherein the second buffer layer is made of a hydrophobic polymer including a light-blocking material.
3. The method of claim 1 , wherein forming the plurality of organic light-emitting elements on the substrate includes:
forming a first electrode on the substrate;
forming a bank layer on the first electrode, wherein the bank layer has a plurality of bank openings, wherein each bank opening exposes at least a part of the first electrode;
forming a light-emitting layer on the exposed part of the first electrode; and
forming a second electrode on the light-emitting layer.
4. The method of claim 3 , wherein an area of a bank opening in the plurality of bank openings in the bank layer is smaller than an area of an opening in the plurality of openings in the second buffer layer.
5. The method of claim 1 , wherein forming the second buffer layer further includes patterning the second buffer layer to form an opening pattern that connects a first opening in the plurality of openings with a second opening adjacent the first opening.
6. The method of claim 1 , wherein forming the second buffer layer further includes forming the second buffer layer such that a top surface of the second buffer layer is inclined.