Display panel, organic light emitting diode and method for manufacturing the same
A display panel, a polymer light emitting diode and a method for manufacturing the same are provided. The polymer light emitting diode includes: an organic light emitting layer having a first surface and a second surface opposite to each other; a hole transport part formed on the first surface of the organic light emitting layer; and an electron transport part formed on the second surface of the organic light emitting layer, the electron transport part including a nanocomposite layer.
1. An organic light emitting diode comprising:
an organic light emitting layer having a first surface and a second surface opposite to each other;
a hole transport part formed on the first surface of the organic light emitting layer, comprising an anode, a hole injection layer and a hole transport layer stacked sequentially; and
an electron transport part formed on the second surface of the organic light emitting layer, the electron transport part comprising a nanocomposite layer and a cathode formed on the nanocomposite layer,
wherein the nanocomposite layer comprises graphene and metalloid oxide.
2. The organic light emitting diode of claim 1 , wherein the metalloid in the metalloid oxide is selected from IIIA group, IVA group, VA group, and VIA group.
3. The organic light emitting diode of claim 1 , wherein the organic light emitting diode is a polymer light emitting diode.
4. A method for manufacturing an organic light emitting diode comprising:
forming a hole transport part configured to provide hole carriers;
forming an organic light emitting layer having a first surface and a second surface opposite to each other, the hole transport part being formed on the first surface of the organic light emitting layer and comprising an anode, a hole injection layer and a hole transport layer stacked sequentially; and
forming an electron transport part on the second surface of the organic light emitting layer, the electron transport part comprising a nanocomposite layer and a cathode formed on the nanocomposite layer,
wherein the nanocomposite layer comprises graphene and metalloid oxide.
5. The method of claim 4 , wherein the nanocomposite layer comprises:
an electron rich carrier, and
a nanoparticle film, comprising transition metal oxide or metalloid oxide, anchored to the electron rich carrier.
6. The method of claim 5 , wherein the forming the electron transport part comprises:
preparing the nanocomposite layer by means of solution process, and
forming material of the nanocomposite layer on the organic light emitting layer by a method selected from a spin coating process and an inkjet printing process.
7. An organic light emitting display panel comprising:
a first substrate;
a second substrate provided opposite to the first substrate;
an organic light emitting diode according to claim 1 provided between the first substrate and the second substrate; and
a seal member provided around the organic light emitting diode and configured to package the organic light emitting diode between the first substrate and the second substrate.
8. The organic light emitting diode of claim 1 , wherein the metalloid oxide comprises Ge 2 O 5 or As 2 O 5 .