Liquid crystal oriented agent and liquid crystal display element
A technology of liquid crystal display element and liquid crystal aligning agent, which is applied in the direction of liquid crystal materials, chemical instruments and methods, optics, etc., and can solve problems such as insufficient improvement of afterimage performance, failure to obtain sufficient voltage retention rate, poor performance, etc.
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Synthetic example 1
[0129] 98 g (0.5 moles) of 1,2,3,4-cyclobutanetetracarboxylic dianhydride as tetracarboxylic dianhydride, and 2,4-diamino-N,N-diallyl as diamine compound Aniline 61g (0.3 mole) and 3,5-two (4-aminobenzamido) n-hexadecyl benzoate 123g (0.2 mole) are dissolved in 1127g N-methyl-2-pyrrolidone, at 60 The reaction was carried out at ℃ for 6 hours to obtain a polymer solution containing polyamic acid. Take a small amount of the obtained polyamic acid solution and add N-methyl-2-pyrrolidone to form a solution with a polyamic acid concentration of 10% by weight. The measured solution viscosity is 50 mPa·s.
[0130] Then, 1409 g of N-methyl-2-pyrrolidone was added to the obtained polyamic acid solution, and 198 g of pyridine and 204 g of acetic anhydride were added, and a dehydration ring-closure reaction was performed at 110° C. for 4 hours. After the dehydration ring-closure reaction, by replacing the solvent in the system with new γ-butyrolactone (in this operation, pyridine and ac...
Synthetic example 2
[0132] 98 g (0.5 moles) of 1,2,3,4-cyclobutanetetracarboxylic dianhydride as tetracarboxylic dianhydride, and 2,4-diamino-N,N-diallyl as diamine compound Aniline 61g (0.3 mole) and 3,5-two (4-aminobenzamido) n-octadecyl benzoate 128g (0.2 mole) are dissolved in 1149g N-methyl-2-pyrrolidone, at 60 The reaction was carried out at ℃ for 6 hours to obtain a polymer solution containing polyamic acid. Take a small amount of the obtained polyamic acid solution and add N-methyl-2-pyrrolidone to form a solution with a polyamic acid concentration of 10% by weight. The measured solution viscosity is 52 mPa·s.
[0133] Then, 1437 g of N-methyl-2-pyrrolidone was added to the obtained polyamic acid solution, and 198 g of pyridine and 204 g of acetic anhydride were added, and a dehydration ring-closure reaction was performed at 110° C. for 4 hours. After the dehydration ring-closure reaction, by replacing the solvent in the system with new γ-butyrolactone (in this operation, pyridine and ac...
Synthetic example 3
[0135] 93 g (0.48 mol) of 1,2,3,4-cyclobutanetetracarboxylic dianhydride as tetracarboxylic dianhydride and 5 g (0.03 mol) of pyromellitic dianhydride, and 2 as diamine compound, 4-diamino-N, N-diallyl aniline 61g (0.3 mol) and 3,5-two (4-aminobenzamido) n-hexadecyl benzoate 123g (0.2 mol) were dissolved in 1129g In N-methyl-2-pyrrolidone, it was reacted at 60 degreeC for 6 hours, and the polymer solution containing a polyamic acid was obtained. Take a small amount of the obtained polyamic acid solution and add N-methyl-2-pyrrolidone to form a solution with a polyamic acid concentration of 10% by weight. The measured solution viscosity is 55 mPa·s.
[0136] Then, 1411 g of N-methyl-2-pyrrolidone was added to the obtained polyamic acid solution, 198 g of pyridine and 204 g of acetic anhydride were added, and dehydration ring-closure reaction was performed at 110° C. for 4 hours. After the dehydration ring-closure reaction, by replacing the solvent in the system with new γ-buty...
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