Liquid crystal composition and liquid crystal display device thereof
A technology for liquid crystal compositions and compounds, applied in liquid crystal materials, instruments, chemical instruments and methods, etc., can solve the problems of speeding up the response speed, the liquid crystal display cannot display normally, and the clearing point is reduced, etc.
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preparation example
[0151] The compound of general formula Ⅰ-2 is obtained by the method of suzuki coupling using commercially available raw materials, and the synthetic route is as follows:
[0152]
[0153] Among them, R 2 represents an alkyl group having 1 to 5 carbon atoms. Both Compound A and Compound B are commercially available.
[0154] Prepare the compound of following structural formula by above-mentioned method:
[0155] When R 2 =C 2 h 5 When, obtain the compound of following structural formula by above-mentioned method:
[0156]
[0157] When R 2 =C 3 h 7 When, obtain the compound of following structural formula by above-mentioned method:
[0158]
[0159] When R 2 =C 4 h 9 When, obtain the compound of following structural formula by above-mentioned method:
[0160]
[0161] When R 2 =C 5 h 11 When, obtain the compound of following structural formula by above-mentioned method:
[0162]
[0163] Table 2 Compound Liquid Crystal Performance Parameters
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Embodiment 1
[0171] The liquid crystal composition of Example 1 was formulated according to the compounds and weight percentages listed in Table 4, and it was filled between the two substrates of the liquid crystal display for performance testing. The test data are shown in the following table:
[0172] Table 4 liquid crystal composition formula and test performance thereof
[0173]
[0174] From the above Example 1 and Comparative Example 1, it can be seen that when the optical anisotropy, dielectric anisotropy and flow viscosity are similar, the liquid crystal composition of the present invention has a shorter response time and better low-temperature storage stability .
Embodiment 2
[0180] The liquid crystal composition of Example 2 was prepared by each compound listed in Table 6 and the weight percentage, which was filled between the two substrates of the liquid crystal display for performance testing. The test data are shown in the following table:
[0181] Table 6 liquid crystal composition formula and test performance thereof
[0182]
[0183] From the above Example 2 and Comparative Example 2, it can be seen that the liquid crystal composition of the present invention has a shorter response and better low-temperature storage when the optical anisotropy, dielectric anisotropy, clearing point and flow viscosity are similar. stability.
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