IP Library › Granted Patent US 11,522,148
Granted Patent B2
US 11,522,148 · App. 16/981,729 · Granted Dec 6, 2022

Display panel having quantum dot light scattering particle composite and manufacturing method thereof

Inventor: Wenxiang Peng (Guangdong, CN)
Assignee: Shenzhen China Star Optoelectronics Semiconductor Display Technology Co., Ltd.
H01L51/502H01L27/322H01L51/5268H01L51/56
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Quick Facts
Patent No.
US 11,522,148
App. No.
16/981,729
Granted
Dec 6, 2022
Kind
B2
Abstract

The present application provides a display panel and a manufacturing method thereof. Quantum dot ink is prepared by dispersing a quantum dot light scattering particle composite in a dispersion medium. The quantum dot light scattering particle composite includes light scattering particles and oil phase quantum dots attached to surfaces of the light scattering particles. Oil solubility of the oil phase quantum dots is used to increase dispersion stability of the light scattering particles in the dispersion medium to satisfy process requirements of inkjet printing.

Claims (30)

1. A manufacturing method of a display panel, comprising following steps:

forming quantum dot ink on a first substrate followed by curing to obtain the first substrate provided with a quantum dot light conversion layer, wherein the quantum dot ink comprises a dispersion medium and a quantum dot light scattering particle composite dispersed in the dispersion medium, the quantum dot light scattering particle composite comprises light scattering particles and oil phase quantum dots attached to surfaces of the light scattering particles, and the quantum dot light conversion layer is configured to receive and be excited by blue light to emit at least red light and green light; and

disposing a surface of a second substrate provided with a blue light emitting layer opposite to a surface of the first substrate provided with the quantum dot light conversion layer to obtain the display panel.

2. The manufacturing method of the display panel according to claim 1 , wherein a preparation method of the quantum dot light scattering particle composite comprises following steps:

dispersing the oil phase quantum dots in a lipophilic solvent to obtain an oil phase quantum dot solution; and

mixing the light scattering particles into the oil phase quantum dot solution and removing the lipophilic solvent after standing to obtain the quantum dot light scattering particle composite, wherein material of the light scattering particles is selected from at least one of titanium dioxide or silicon oxide.

3. The manufacturing method of the display panel according to claim 2 , wherein a preparation method of the oil phase quantum dots comprises following steps:

dispersing an oil phase quantum dot stock solution in the lipophilic solvent to obtain a solvent of the oil phase quantum dot stock solution, wherein the oil phase quantum dot stock solution comprises original oil phase quantum dots, and the original oil phase quantum dots comprise quantum dots and organic ligands attached on surfaces of the quantum dots; and

washing away part of the organic ligands in the original oil phase quantum dots by adding a precipitant to the solvent of the oil phase quantum dot stock solution, and obtaining the oil phase quantum dots by centrifuging and separating.

4. The manufacturing method of the display panel according to claim 3 , wherein the lipophilic solvent is cyclohexane, and the precipitant is an alcohol solvent.

5. The manufacturing method of the display panel according to claim 4 , wherein the precipitant is ethanol.

6. The manufacturing method of the display panel according to claim 3 , wherein the organic ligands are selected from at least one of oleic acid, trioctylphosphine, oleylamine, or dodecanethiol.

7. The manufacturing method of the display panel according to claim 1 , wherein a mass percentage of the quantum dot light scattering particle composite and the dispersion medium is (1%-5%):(95%-99%), and the dispersion medium comprises monomers, photoinitiators, and an organic solvent.

8. The manufacturing method of the display panel according to claim 1 , wherein a particle diameter of each of the light scattering particles is greater than 10 nanometers and less than or equal to 50 nanometers.

9. The manufacturing method of the display panel according to claim 1 , wherein the blue light emitting layer is selected from at least one of a blue organic light emitting diode, a blue micro light emitting diode, or a blue sub-millimeter light emitting diode.

10. A display panel, comprising a first substrate, a quantum dot light conversion layer, a second substrate, and a blue light emitting layer;

wherein the first substrate is opposite to the second substrate;

wherein the quantum dot light conversion layer is disposed on a surface of the first substrate opposite to the second substrate, the quantum dot light conversion layer comprises a quantum dot light scattering particle composite, the quantum dot light scattering particle composite comprises light scattering particles and oil phase quantum dots attached to surfaces of the light scattering particles, and the quantum dot light conversion layer is configured to receive and be excited by blue light to emit at least red light and green light;

wherein the blue light emitting layer is disposed on a surface of the second substrate opposite to the first substrate; and

wherein the blue light emitting layer is configured to emit blue light.

11. The display panel according to claim 10 , wherein the quantum dot light conversion layer comprises a red light quantum dot light conversion unit, a green light quantum dot light conversion unit, and a blue light diffusion unit;

the red light quantum dot light conversion unit comprises the light scattering particles and oil phase red light quantum dots attached to the surfaces of the light scattering particles;

the green light quantum dot light conversion unit comprises the light scattering particles and oil phase green light quantum dots attached to the surfaces of the light scattering particles;

the blue light diffusion unit comprises organic silicon scattering particles; and

material of the light scattering particles is selected from at least one of titanium dioxide or silicon oxide.

12. The display panel according to claim 10 , wherein a particle diameter of each of the light scattering particles is greater than 10 nanometers and less than or equal to 50 nanometers.

13. The display panel according to claim 10 , further comprising a color filter layer disposed between the first substrate and the quantum dot light conversion layer.

14. The display panel according to claim 13 , further comprising a dielectric layer disposed between the color filter layer and the quantum dot light conversion layer.

15. The display panel according to claim 14 , wherein the dielectric layer comprises a silicon dioxide layer.

16. The display panel according to claim 10 , wherein the blue light emitting layer is selected from at least one of a blue organic light emitting diode, a blue micro light emitting diode, or a blue sub-millimeter light emitting diode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2020
From: PENG, WENXIANG
To: SHENZHEN CHINA STAR OPTOELECTRONICS SEMICONDUCTOR DISPLAY TECHNOLOGY CO., LTD.
Reel/Frame 054106/0839 →
Priority Claims (1)
CN 202010392054.2 · May 11, 2020 · national
Continuity (1)
Related Publication 20210351369A1 · Nov 11, 2021