Claims
- 1. In a liquid crystal display device of the matrix display type having a high contrast ratio and a broad effective viewing-angle range, which contains a liquid crystal composition having a positive dielectric anisotropy in the nematic phase, said composition comprising 3 wt.% or more of 2-(4-alkoxyphenyl)-5-alkylpyrimidine compounds and a p-type component comprising cyanobiphenyl compounds selected from the group consisting of a 4-alkyl-4'-cyanobiphenyl, a 4-alkoxy-4'-cyanobiphenyl, a 4-alkoxy-ethyleneoxy-4'-cyanobiphenyl, and a 4-cyano-4'-(4-alkyl)-cyclohexylbiphenyl, the improvement comprising said composition further including a low-viscosity material having a viscosity (.eta.) at 20.degree. of 20 mm.sup.2.s.sup.-1 or lower and a high clearing-point material having a clearing point (T.sub.cp) of 100.degree. C. or higher, each of said materials being present in an effective amount so that the clearing point of the composition is 60.degree. C. or higher and the viscosity at 20.degree. C. is 35 mm.sup.2.s.sup.-1 or lower.
- 2. The liquid crystal display device of claim 1, wherein said composition further comprises a component which prevents the formation of smectic phase at least in the range from 0.degree. C. through 60.degree. C.
- 3. The liquid crystal display device of claim 1 wherein said p-type component consists essentially of cyanobiphenyl compounds.
- 4. The liquid crystal display device of claim 1, wherein said 2-(4-alkoxyphenyl)-5-alkylpyrimidine compound is represented as ##STR120## wherein R.sub.1 =C.sub.n H.sub.2n+1 (n=1.about.12) and R.sub.2 =C.sub.n H.sub.2n+1 (n=1.about.12).
- 5. The liquid crystal display device of claim 1, wherein said low-viscosity material consists of compounds having alkyl or alkoxy groups as molecular terminal groups.
- 6. The liquid crystal display device of claim 1, wherein said low-viscosity material is a member selected from the group consisting of compounds represented by the following general formulae: ##STR121## wherein R.sub.1 through R.sub.8 represent a straight-chain alkyl group having 1 through 6 carbon atoms, and R.sub.3 ' and R.sub.6 ' represent straight-chain alkoxy groups having 1 through 6 carbon atoms.
- 7. The liquid crystal display device of claim 1, wherein said high clearing-point material is a member selected from the group consisting of compounds having alkyl or alkoxy groups as molecular terminal groups.
- 8. The liquid crystal displace device of claim 7, wherein said high clearing-point material is a member selected from the group consisting of compounds having at least one cyclohexane ring or more in the molecule.
- 9. The liquid crystal display device of claim 7, wherein said high clearing-point material is a member selected from compounds which do not contain two ester linkages or more in the molecule.
- 10. The liquid display device of claim 9, wherein said high clearing-point material is a member selected from the group consisting of compounds which do not contain ester linkages in the molecule.
- 11. The liquid crystal display device of claim 1, wherein said high clearing-point material is a member selected from the group consisting of compounds represented by the following general formulae: ##STR122## wherein R.sub.9 through R.sub.22 represent a straight-chain alkyl group having 1 to 10 carbon atoms.
- 12. The liquid crystal display device of claim 1, wherein said composition comprises at least 33 wt. % of said 2-(4-alkoxyphenyl)-5-alkylpyrimidine compounds.
- 13. The liquid crystal display device of claim 2, wherein said component which prevents the formation of a smectic phase is a member selected from the group consisting of compounds represented by the following general formulae: ##STR123##
- 14. The liquid crystal display device of claim 13, wherein said component which prevents the formation of a smectic phase is present in an amount of at least 12.5%.
- 15. The liquid crystal display device of claim 1, wherein said composition comprises 16 to 21.5 wt.% of said cyanobiphenyl compounds.
- 16. A liquid crystal composition having a positive dielectric anisotropy in the nematic phase, a p-type component consisting essentially of cyanobiphenyl compounds sselected from the group consisting of a 4-alkyl-4'-cyanobiphenyl, a 4-alkoxy-4'-cyanobiphenyl, a 4-alkoxy-ethyleneoxy-4'-cyanobiphenyl, and a 4-cyano-4'(4-alkyl)-cyclohexyl biphenyl, comprising 3 wt.% or more of a 2-(4-alkoxyphenyl)-4-alkylpyrimidine compound, a low-viscosity material having a viscosity (.eta.) at 20.degree. C. of 20 mm.sup.2.s.sup.-1 or lower and a high clearing-point material having a clearing point (T.sub.cp) of 100.degree. C. or higher.
- 17. A liquid crystal composition according to claim 16, wherein said low-viscosity material is a member selected from the group consisting of compounds represented by the following general formulae: ##STR124## wherein R.sub.1 through R.sub.8 represent a straight-chain alkyl group having 1 through 6 carbon atoms, and R.sub.3 ' and R.sub.6 ' represent straight-chain alkoxy groups having 1 through 6 carbon atoms, and said high clearing point material is a member selected from the group consisting of compounds represented by the following general formulae: ##STR125## wherein R.sub.9 through R.sub.22 represent a straight-chain alkyl group having 1 through 10 carbon atoms.
- 18. In a liquid crystal television device comprising a liquid crystal composition, the improvement wherein the liquid crystal composition is that of claim 16.
- 19. The liquid crystal display device of claim 1, wherein the alkyl portion of said 4-alkyl-4'-cyanobiphenyl has 1 to 9 carbons, the alkoxy portion of said 4-alkoxy-4'-cyanobiphenyl has 1 to 7 carbons, the alkoxy portion of said 4-alkoxy-ethyleneoxy-4'-cyanobiphenyl has 1 to 5 carbons and the (4-alkyl) portion of said 4-cyano-4'(4-alkyl)-cyclohexyl-biphenyl has 1 to 7 carbons.
- 20. A liquid crystal composition according to claim 16, wherein the alkyl portion of said 4-alkyl-4'-cyanobiphenyl has 1 to 9 carbons, the alkoxy portion of said 4-alkoxy-4'-cyanobiphenyl has 1 to 7 carbons, the alkoxy portion of said 4-alkoxy-ethyleneoxy-4'-cyanobiphenyl has 1 to 5 carbons and the (4-alkyl) portion of said 4-cyano-4'(4-alkyl)-cyclohexyl-biphenyl has 1 to 7 carbons.
Priority Claims (2)
Number |
Date |
Country |
Kind |
58-93812 |
May 1983 |
JPX |
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58-158510 |
Aug 1983 |
JPX |
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Parent Case Info
This application is a continuation-in-part application in connection with U.S. patent application Ser. No. 642,775, filed on Aug. 21, 1984, now U.S. Pat. No. 4,643,841, and U.S. patent application Ser. No. 834,357 filed on Feb. 28, 1986, now U.S. Pat. No. 4,722,804, both in the names of Yutaka ISHII, Fumiaki FUNADA and Masataka MATSUURA. U.S. patent application Ser. No. 834,357 filed on Feb. 28, 1986 is a continuation application of U.S. patent application Ser. No. 614,013 filed on May 25, 1984 and now abandoned.
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Continuations (1)
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Number |
Date |
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Parent |
614013 |
May 1984 |
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Continuation in Parts (1)
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Number |
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642775 |
Aug 1984 |
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