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Display panel based on quantum dot liquid crystal molecules and manufacturing method thereof

A technology of liquid crystal molecules and display panels, applied in nonlinear optics, instruments, optics, etc., can solve the problems of LCD color characteristic short board, LCD panel smear, low response speed, etc., to improve light utilization efficiency, simplify structure, The effect of isolating crosstalk

Active Publication Date: 2020-04-21
FUZHOU UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] In the field of flat panel display technology, liquid crystal display technology occupies the mainstream of flat panel display products due to its advantages such as low power consumption and long life. For existing production lines, liquid crystal panels of various sizes are extremely complete and mature. Therefore, liquid crystal display panels The cost is also low. However, the LCD color characteristics of the existing production line are still its shortcoming. It is difficult to break through the NTSC 100% index. In the field of competitions and e-sports, the LCD panel with low response speed will still have smearing. In the large-screen display, the viewing angle of the LCD also needs to be improved.

Method used

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  • Display panel based on quantum dot liquid crystal molecules and manufacturing method thereof
  • Display panel based on quantum dot liquid crystal molecules and manufacturing method thereof
  • Display panel based on quantum dot liquid crystal molecules and manufacturing method thereof

Examples

Experimental program
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Effect test

Embodiment 1

[0052] Such as figure 1 As shown, the structure of the quantum dot liquid crystal display panel is determined to be the backlight LED and the light guide plate uLED from bottom to top, the transverse polarizer, and the lower substrate of the liquid crystal cell (the addressing electrode array is arranged inside the liquid crystal cell, and the addressing electrodes are interlaced in the rows and columns. There are dislocation convex trihedral electrodes), quantum dot liquid crystal molecules (separated by black photoresist array), upper substrate of the liquid crystal cell, vertical polarizer, when the addressing signal selects the pixel module, the nematic liquid crystal is affected The electric field deflects, and the deflection angle is determined by the electric field. The larger the angle, the more light is emitted, and vice versa; when there is no electric field, the liquid crystal state is as figure 2 As shown, at this time, no light passes through the liquid crystal c...

Embodiment 2

[0057] Such as Figure 7 As shown, determine the structure of the display panel of the backlight quantum dot liquid crystal molecules of the white light LED, the materials and parameters are the same as in Example 1, and the electrode part of the liquid crystal cell is adjusted as follows: deposit a whole piece of transparent electrode material on the transparent glass, and deposit the entire transparent electrode material on the electrode. Coat a layer of photoresist, use photolithography to define row and column addressing electrodes and strip electrodes with comb-like dislocation distribution, and then etch. After the substrate is fabricated, clean and dry the substrate, and then spin-coat it The black photoresist is used for the production of the sub-pixel array Bank, and the display panel of the quantum dot liquid crystal molecules can be obtained by pouring the three-color quantum dot liquid crystal molecules for glue sealing and assembly.

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Abstract

The invention relates to a display panel based on quantum dot liquid crystal molecules. The display panel is characterized in that the display panel comprises a light guide plate uLED, a transverse polaroid, a liquid crystal box lower substrate, quantum dot liquid crystal molecules, a liquid crystal box upper substrate and a vertical polaroid which are arranged from bottom to top; a backlight source LED is arranged in the light guide plate uLED; an addressing electrode array is arranged in the liquid crystal box, and dislocation electrodes are distributed at staggered positions of row addressing electrodes and column addressing electrodes; the quantum dot liquid crystal molecules are separated by a black photoresist array; and an opening and closing mode of the liquid crystal panel is adjusted in a dislocation electrode mode, and a function of the liquid crystal panel, namely a display pixel, is achieved by controlling whether a backlight source excites quantum dot liquid crystals. According to the display panel, a color film layer of a traditional liquid crystal display panel is removed, light utilization efficiency is greatly improved, crosstalk between pixel light is isolated, and a structure of the liquid crystal display panel is simplified.

Description

technical field [0001] The invention relates to the fields of LCD, nanowire material and quantum dot display, in particular to a display panel based on quantum dot liquid crystal molecules and a manufacturing method thereof. Background technique [0002] In the field of flat panel display technology, liquid crystal display technology occupies the mainstream of flat panel display products due to its advantages such as low power consumption and long life. For existing production lines, liquid crystal panels of various sizes are extremely complete and mature. Therefore, liquid crystal display panels The cost is also low. However, the LCD color characteristics of the existing production line are still its shortcoming. It is difficult to break through the NTSC 100% index. In the field of competitions and e-sports, LCD panels with low response speed will still have smearing. In large-screen displays, the viewing angle of LCD also needs to be improved. In order to solve the above ...

Claims

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Application Information

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IPC IPC(8): G02F1/13357G02F1/1343
CPCG02F1/133603G02F1/13362G02F1/134309
Inventor 叶芸江宗钊郭太良林鉴垚郭举陈恩果
Owner FUZHOU UNIVERSITY