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Liquid crystal composition and display device thereof

A technology of liquid crystal composition and compound, which is applied in the direction of liquid crystal materials, instruments, chemical instruments and methods, etc., can solve the problems of unable to display fast-moving pictures, limited range of driving voltage adjustment, difficult control of AC voltage stability, etc., to achieve good display effect, improvement of low-temperature miscibility, effect of high optical anisotropy

Active Publication Date: 2022-02-22
JIANGSU HECHENG DISPLAY TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

They all have their own advantages and disadvantages: MVA mode has the characteristics of high contrast and fast response, but it needs a biaxial compensation film and two elliptical polarizers, so the cost is higher; OCB mode is difficult to maintain stable control with AC voltage , the transmittance of R, G, and B monochromatic light is also different. In addition, in the case of no field, the molecules in the liquid crystal cell are arranged in a direction parallel to the substrate. In order to achieve a curved arrangement, it is necessary to Add a voltage to the box for a few seconds to preset, and then maintain this arrangement at a lower voltage, which is inconvenient to use; IPS mode only needs a linear polarizer without a compensation film, but its response speed is too fast Slow, unable to display fast-moving pictures
[0008] According to the transmittance formula of IPS mode Transmittance (transmittance, T)∝|Δε| / ε ⊥ ("∝" means "inverse proportional" relationship, ε ⊥ Indicates the dielectric constant perpendicular to the direction of the molecular axis), to increase the transmittance of the liquid crystal material, you can try to reduce the Δε of the liquid crystal medium, but generally the adjustment range of the driving voltage of the same product is limited
In addition, the liquid crystal molecules will tilt to the Z-axis direction under the action of the vertical component of the fringe electric field, resulting in a change in their optical anisotropy Δn, according to the formula (wherein, χ is the angle between the optical axis of the liquid crystal layer and the optical axis of the polarizer, Δn is the optical anisotropy, d is the cell spacing, and λ is the wavelength) it can be known that effective Δn*d will affect T, if the positive The transmittance of liquid crystal materials can also be considered to increase Δn*d, but the retardation design of each product is fixed

Method used

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  • Liquid crystal composition and display device thereof
  • Liquid crystal composition and display device thereof
  • Liquid crystal composition and display device thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0257] The liquid crystal composition of Example 1 was prepared according to the compounds and weight percentages listed in Table 3, which was filled between the two substrates of the liquid crystal display for performance testing.

[0258] Table 3 liquid crystal composition formula and performance parameter test

[0259]

[0260]

Embodiment 2

[0262] The liquid crystal composition of Example 2 was prepared according to the compounds and weight percentages listed in Table 4, which was filled between the two substrates of the liquid crystal display for performance testing.

[0263] Table 4 liquid crystal composition formula and performance parameter test

[0264]

[0265]

Embodiment 3

[0267] The liquid crystal composition of Example 3 was prepared according to the compounds and weight percentages listed in Table 5, which was filled between the two substrates of the liquid crystal display for performance testing.

[0268] Table 5 liquid crystal composition formula and performance parameter test

[0269]

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Abstract

The present invention provides a liquid crystal composition comprising: at least one compound of general formula I; at least one compound of general formula II; at least one compound of general formula III; and at least one compound of general formula Compounds of M. The present invention also provides a display device comprising the liquid crystal composition. The liquid crystal composition provided by the present invention has high dielectric anisotropy, suitably high optical anisotropy, suitably high clearing point, high transmittance, good low-temperature stability, and larger K ave , so that the liquid crystal display device comprising the liquid crystal composition of the present invention has higher contrast, relatively less light scattering, and good display effect.

Description

technical field [0001] The invention relates to the field of liquid crystal materials, in particular to a liquid crystal composition and a display device thereof. Background technique [0002] Liquid crystal material is a mixture of organic rod-shaped small molecular compounds that have both fluidity of liquid and anisotropy of crystal at a certain temperature. Liquid crystal display devices use the optical anisotropy and dielectric anisotropy of liquid crystal materials to work, and have been widely used at present. The classification of liquid crystal display elements based on the operation mode of liquid crystal molecules is: phase change (phase change, PC), twisted nematic (twisted nematic, TN), supertwisted nematic (supertwisted nematic, STN), dynamic scattering (dynamic scattering, DS ), ferroelectric liquid crystal (FLC), guest-host (guest-host, GH), electrically controlled birefringence (ECB), optically compensated bend (OCB), coplanar switching (in- plane switchin...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09K19/44C09K19/46G02F1/1333
CPCC09K19/44C09K19/46G02F1/1333
Inventor 贺笛徐海彬刘云云张文琦
Owner JIANGSU HECHENG DISPLAY TECH CO LTD