Manufacturing method of quantum dot light emitting diode
A quantum dot light emitting diode, including a first electrode and a second electrode, a quantum dot light emitting layer disposed between the two electrodes, including at least a red quantum dot, a green quantum dot and a blue quantum dot, and a black matrix at least disposed among the red quantum dot, the green quantum dot and the blue quantum dot; one of the first electrode and the second electrode that is located on a light exiting side is at least a transparent electrode. With the quantum dot light emitting diode, a full-color display can be realized, and the aperture ratio of pixels can be effectively enhanced. There are further disclosed a manufacturing method of the quantum dot light emitting diode and a display device.
1. A manufacturing method of a quantum dot light emitting diode, comprising: forming a first electrode and a second electrode on a substrate, forming a quantum dot light emitting layer that includes at least a red quantum dot, a green quantum dot and a blue quantum dot between the first electrode and the second electrode, and forming a black matrix at least among the red quantum dot, the green quantum dot and the blue quantum dot, wherein forming of the red quantum dot includes;
dissolving a zinc sulfide nano semiconductor compound with a particle diameter of 10 to 12 nm into a first organic solvent to form a first mixture; and
coating the first mixture on the substrate and conducting a first patterning process treatment so as to form the red quantum dot after the organic solvent has volatized;
wherein forming of the green quantum dot includes:
dissolving a zinc sulfide nano semiconductor compound with a particle diameter of 7 to 8 nm into a second organic solvent to form a second mixture; and
coating the second mixture on the substrate and conducting a second patterning process treatment so as to form the green quantum dot after the organic solvent has volatized; and
wherein forming of the blue quantum dot includes:
dissolving a zinc sulfide nano semiconductor compound with a particle diameter of 4 to 5 nm into a third organic solvent to form a third mixture; and
coating the third mixture on the substrate and conducting a third patterning process treatment so as to form the blue quantum dot after the organic solvent has volatilized.
2. The manufacturing method claimed as claim 1 , wherein forming of the black matrix among the red quantum dot, the green quantum dot and the blue quantum dot includes:
forming the black matrix among a stack of the red quantum dot and the second electrode corresponding to the red quantum dot, a stack of the green quantum dot and the second electrode corresponding to the green quantum dot, and a stack of the blue quantum dot and the second electrode corresponding to the blue quantum dot, and the first electrode covering the substrate; or,
forming the black matrix among a stack of the red quantum dot and the first electrode corresponding to the red quantum dot, a stack of the green quantum dot and the first electrode corresponding to the green quantum dot, and a stack of the blue quantum dot and the first electrode corresponding to the blue quantum dot, and the second electrode covering the substrate.
3. The manufacturing method claimed as claim 1 , wherein forming of the black matrix among the red quantum dot, the green quantum dot and the blue quantum dot includes:
forming the black matrix among a stack of the red quantum dot and the second electrode corresponding to the red quantum dot, a stack of the green quantum dot and the second electrode corresponding to the green quantum dot, and a stack of the blue quantum dot and the second electrode corresponding to the blue quantum dot, and the first electrode covering the substrate; or,
forming the black matrix among a stack of the red quantum dot and the first electrode corresponding to the red quantum dot, a stack of the green quantum dot and the first electrode corresponding to the green quantum dot, and a stack of the blue quantum dot and the first electrode corresponding to the blue quantum dot, and the second electrode covering the substrate.