Organic light-emitting diode device and manufacturing method thereof
The embodiment of the present invention relates to an organic light-emitting diode (OLED) device, which comprises a pixel define layer (PDL) and a light-emitting structure. Metal nanoparticles are doped in the PDL. The OLED device improves the luminous efficiency. The embodiment of the present invention further provides a method for manufacturing the OLED device.
1. An organic light-emitting diode (OLED) device, comprising a pixel define layer (PDL) and a light-emitting structure, wherein the PDL contains metal nanoparticles therein, wherein the nanoparticles are distributed only in a plane around the middle of the PDL, wherein an isolation layer is disposed between the metal nanoparticles and light-emitting molecules in the light-emitting structure, and wherein the isolation layer is not part of the PDL and the isolation layer and the metal nanoparticles are combined in independent core-shell structure, wherein the PDL does not cover the entire horizontal plane of the light-emitting structure.
2. The OLED device according to claim 1 , wherein the isolation layer is made of an insulating material.
3. The OLED device according to claim 1 , wherein metallic material in the metal nanoparticles comprises:
one selected from gold, silver and aluminum; or
one selected from alloy of gold, alloy of silver and alloy of aluminum; or
an alloy formed of any two or three of gold, silver and aluminum.
4. The OLED device according to claim 1 , wherein a shape of the metal nanoparticles is one or more selected from sphere, prism, cube and cage.
5. The OLED device according to claim 1 , wherein a particle diameter of the metal nanoparticles is from 1 to 100 nm.
6. An organic light-emitting diode (OLED) device, comprising:
a substrate;
a pixel define layer (PDL) attached to a first portion of the surface area of a first face of the substrate, wherein the PDL contains metal nanoparticles therein, wherein the nanoparticles are distributed only in a plane around the middle of the PDL;
an anode and a light emitting structure having light-emitting molecules embossed within the PDL, wherein the anode is also attached to a second portion of the surface area of the first face of the substrate; and
an insulating isolation layer distinct from the PDL and disposed between the metal nanoparticles and light emitting molecules of the light emitting structure.