Claims
- 1. A method of producing a polymer dispersion type liquid crystal display element comprising:the filling step in which a polymer precursor·liquid crystal mixture, including a liquid crystal and a polymer precursor, from which a polymer compound which allows the relation of Expression 4-4 to hold between said liquid crystal and said polymer compound is formed by polymerization, is filled in a space between a pair of electrodes supported by substrates and covered with insulating films, and the polymer·liquid crystal complex forming step in which said polymer compound in said polymer precursor·liquid crystal mixture, after filled, is polymerized to form said polymer compound which allows the relation of Expression 4-4 to hold, while also polymer·liquid crystal complex in which droplets of said liquid crystal are dispersed in the formed polymer compound is formed: γP>γLC Expression 4-4, where γ P is critical surface tension of the polymer compound and γ LC is surface tension of the liquid crystal.
- 2. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 1, wherein said polymer precursor to be treated in said filling step and said polymer precursor·liquid crystal complex forming step is composed of polymerizable monomer and polymerizable oligomer, and further at least one of the polymerizable oligomer and the polymerizable monomer has a polar group.
- 3. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 2, wherein said polar group is at least one group selected from the group consisting of a hydroxyl group, a carboxyl group and an imino group.
- 4. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 1, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by the method of said polymer precursor·liquid crystal mixture placed between said pair of substrates being irradiated with ultraviolet.
- 5. A method of producing a polymer dispersion type liquid crystal display element in which a polymer·liquid crystal complex in which droplets of liquid crystal are dispersed in a polymer compound is filled in a space between a pair of electrodes supported by substrates and covered with insulating films, and further surface tension γ LC of said liquid crystal and critical surface tension γ F of said insulating films meet the relation of Expression 4-1:γLC−γF<0 Expression 4-1, said method comprising:the filling step in which a polymer precursor·liquid crystal mixture, including a liquid crystal and a polymer precursor, from which a polymer compound which allows the relation of Expression 4-4 to hold between said liquid crystal and said polymer compound is formed by polymerization, is filled in a space between said pair of electrodes, and the polymer·liquid crystal complex forming step in which said polymer precursor in said polymer precursor·liquid crystal mixture, after filled, is polymerized to form said polymer compound which allows the relation of the Expression 4-4 to hold, while also polymer·liquid crystal complex in which the droplets of liquid crystal are dispersed in the formed polymer compound is formed: γP>γLC Expression 4-4, where γ P is critical surface tension of the polymer compound and γ LC is surface tension of the liquid crystal.
- 6. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 5, wherein said polymer precursor to be treated in said filling step and said polymer·liquid crystal complex forming step is composed of polymerizable monomer and polymerizable oligomer, and further at least one of the polymerizable oligomer and the polymerizable monomer has a polar group.
- 7. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 6, wherein said polar group is at least one group selected from the group consisting of a hydroxyl group, a carboxyl group and an imino group.
- 8. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 5, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by the method of said polymer precursor·liquid crystal mixture being irradiated with ultraviolet.
- 9. A method of producing a polymer dispersion type liquid crystal display element in which a polymer·liquid crystal complex in which droplets of liquid crystal are dispersed in a polymer compound is filled in a space between a pair of electrodes supported by substrates and covered with insulating films, and further surface tension γ LC of said liquid crystal and critical surface tension γ F of said insulating films meet the relation of Expression 4-5:−1·dyne/cm<γLC−γF<0 Expression 4-5, said method comprising:the filling step in which a polymer precursor·liquid crystal mixture, including a liquid crystal and a polymer precursor, from which a polymer compound which allows the relation of Expression 4-4 to hold between said liquid crystal and said polymer compound is formed by polymerization, is filled in a space between said pair of electrodes, and the polymer·liquid crystal complex forming step in which said polymer precursor in said polymer precursor·liquid crystal mixture, after filled, is polymerized to form said polymer compound which allows the relation of the Expression 4-4 to hold, while also polymer·liquid crystal complex in which the droplets of liquid crystal are dispersed in the formed polymer compound is formed: γP>γLC Expression 4-4, where γ P is critical surface tension of the polymer compound and γ LC is surface tension of the liquid crystal.
- 10. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 9, wherein said polymer precursor to be treated in said filling step and said polymer·liquid crystal complex forming step is composed of polymerizable monomer and polymerizable oligomer, and further at least one of the polymerizable oligomer and the polymerizable monomer has a polar group.
- 11. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 10, wherein said polar group is at least one group selected from the group consisting of a hydroxyl group, a carboxyl group and an imino group.
- 12. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 9, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by the method of said polymer precursor·liquid crystal mixture being irradiated with ultraviolet.
- 13. A method of producing a polymer dispersion type liquid crystal display element, in which a polymer·liquid crystal complex in which droplets of liquid crystal are dispersed in a polymer compound is filled in a space between a pair of electrodes supported by substrates and covered with insulating films; surface tension γ LC of said liquid crystal and critical surface tension γ F of said insulating films meet the relation of Expression 4-1; and said polymer·liquid crystal complex has a value of γ, which indicates steepness of a threshold of a scattering-transmittance characteristic, falling in the range of 1.95 to 2.25:γLC−γF<0 Expression 4-1, said method comprising:the filling step in which a polymer precursor·liquid crystal mixture, including a liquid crystal and a polymer precursor, from which a polymer compound which allows the relation of Expression 4-4 to hold between said liquid crystal and said polymer compound is formed by polymerization, is filled in a space between said pair of electrodes, and the polymer·liquid crystal complex forming step in which said polymer precursor in said polymer precursor·liquid crystal mixture is polymerized to form said polymer compound which allows the relation of said Expression 4-4 to hold, while also polymer·liquid crystal complex in which the droplets of liquid crystal are dispersed in the formed polymer compound is formed: γP>γLC Expression 4-4, where γ P is critical surface tension of the polymer compound and γ LC is surface tension of the liquid crystal.
- 14. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 13, wherein said polymer precursor to be treated in said filling step and said polymer precursor·liquid crystal complex forming step is composed of polymerizable monomer and polymerizable oligomer, and further at least one of the polymerizable oligomer and the polymerizable monomer has a polar group.
- 15. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 14, wherein said polar group is at least one group selected from the group consisting of a hydroxyl group, a carboxyl group and an imino group.
- 16. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 13, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by the method of said polymer precursor·liquid crystal mixture being irradiated with ultraviolet.
- 17. A method of producing a polymer dispersion type liquid crystal display element in which a polymer·liquid crystal complex, in which droplets of liquid crystal are dispersed in a polymer compound, is filled in a space between a pair of electrodes supported by substrates and covered with insulating films and further surface tension γ LC of said liquid crystal and critical surface tension γ F of said insulating films meet the relation of Expression 4-3:0<γLC−γF<1·dyne/cm Expression 4-3, said method comprising:the filling step in which a polymer precursor·liquid crystal mixture, including a liquid crystal and a polymer precursor, from which a polymer compound which allows the relation of Expression 4-4 to hold between said liquid crystal and said polymer compound is formed by polymerization, is filled in a space between said pair of electrodes, and the polymer·liquid crystal complex forming step in which said polymer precursor in said polymer precursor·liquid crystal mixture, after filled, is polymerized to form said polymer compound which allows the relation of the Expression 4-4 to hold, while also polymer·liquid crystal complex in which said droplets of liquid crystal are dispersed in the formed polymer compound is formed: γP>γLC Expression 4-4, where γ P is critical surface tension of the polymer compound and γ LC is surface tension of the liquid crystal.
- 18. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 17, wherein said polymer precursor to be treated in said filling step and said polymer precursor·liquid crystal mixture complex forming step is composed of polymerizable monomer and polymerizable oligomer, and further at least one of the polymerizable oligomer and the polymerizable monomer has a polar group.
- 19. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 18, wherein said polar group is at least one group selected from the group consisting of a hydroxyl group, a carboxyl group and an imino group.
- 20. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 17, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by the method of said polymer precursor·liquid crystal mixture being irradiated with ultraviolet.
- 21. A method of producing a polymer dispersion type liquid crystal display element, in which a polymer·liquid crystal complex in which droplets of liquid crystal are dispersed in a polymer compound is filled in a space between a pair of electrodes supported by substrates and covered with insulating films made of polyamino acid, polyamino acid derivative or protein, and further surface tension γ LC of said liquid crystal and critical surface tension γ F of said insulating films meet the relation of Expression 4-1:γLC−γF<0 Expression 4-1, said method comprising:the filling step in which a polymer precursor·liquid crystal mixture, including a liquid crystal and a polymer precursor, from which a polymer compound which allows the relation of Expression 4-4 to hold between said liquid crystal and said polymer compound is formed by polymerization, is filled in a space between said pair of electrodes, and the polymer·liquid crystal complex forming step in which said polymer precursor in said polymer precursor·liquid crystal mixture is polymerized to form said polymer compound which allows the relation of the Expression 4-4 to hold, while also polymer·liquid crystal complex in which the droplets of liquid crystal are dispersed in the formed polymer compound is formed: γP>γLC Expression 4-4, where γ P is critical surface tension of the polymer compound and γ LC is surface tension of the liquid crystal.
- 22. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 21, wherein said polymer precursor to be treated in said filling step and said polymer·liquid crystal complex forming step is composed of polymerizable monomer and polymerizable oligomer, and further at least one of the polymerizable oligomer and the polymerizable monomer has a polar group.
- 23. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 22, wherein said polar group is at least one group selected from the group consisting of a hydroxyl group, a carboxyl group and an imino group.
- 24. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 21, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by the method of said polymer·liquid crystal being irradiated with ultraviolet.
- 25. A method of producing a polymer dispersion type liquid crystal display element, in which a polymer·liquid crystal complex in which droplets of liquid crystal are dispersed in a polymer compound is filled in a space between a pair of electrodes supported by substrates and covered with insulating films made of polyamino acid, polyamino acid derivative or protein, and further surface tension γ LC of said liquid crystal and critical surface tension γ F of said insulating films meet the relation of Expression 4-5:−1·dyne/cm<γLC−γF<0 Expression 4-5, said method comprising:the filling step in which a polymer·liquid crystal, including a liquid crystal and a polymer precursor, from which a polymer compound which allows the relation of Expression 4-4 to hold between said liquid crystal material and said polymer compound is formed by polymerization, is filled in a space between said pair of electrodes, and the polymer·liquid crystal complex forming step in which said polymer precursor in said polymer·liquid crystal, after filled, is polymerized to form said polymer compound which allows the relation of said Expression 4-4 to hold, while also polymer·liquid crystal complex in which the droplets of liquid crystal material are dispersed in the formed polymer compound is formed: γP>γLC Expression 4-4, where γ P is critical surface tension of the polymer compound and γ LC is surface tension of the liquid crystal.
- 26. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 25, wherein said polymer precursor to be treated in said filling step and said polymer·liquid crystal complex forming step is composed of polymerizable monomer and polymerizable oligomer, and further at least one of the polymerizable oligomer and the polymerizable monomer has a polar group.
- 27. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 26, wherein said polar group is at least one group selected from the group consisting of a hydroxyl group, a carboxyl group and an imino group.
- 28. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 25, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by the method of said polymer·liquid crystal being irradiated with ultraviolet.
- 29. A method of producing a polymer dispersion type liquid crystal display element, in which a polymer·liquid crystal complex in which droplets of liquid crystal are dispersed in a polymer compound is filled in a space between a pair of electrodes supported by substrates and covered with insulating films made of polyamino acid, polyamino acid derivative or protein; surface tension γ LC of said liquid crystal and critical surface tension γ F of said insulating films meet the relation of Expression 4-1; and said polymer·liquid crystal complex has a value of γ, which indicates steepness of a threshold of a scattering-transmittance characteristic, falling in the range of 1.95 to 2.25:γLC−γF<0 Expression 4-1, said method comprising:the filling step in which a polymer·liquid crystal, including a liquid crystal and a polymer precursor, from which a polymer compound which allows the relation of Expression 4-4 to hold between said liquid crystal and said polymer compound is formed by polymerization, is filled in a space between said pair of electrodes, and the polymer·liquid crystal complex forming step in which said polymer precursor in said polymer·liquid crystal, after filled, is polymerized to form said polymer compound which allows the relation of said Expression 4-4 to hold, while also polymer·liquid crystal complex in which the droplets of liquid crystal are dispersed in the formed polymer compound is formed: γP>γLC Expression 4-4, where γ P is critical surface tension of the polymer compound and γ LC is surface tension of the liquid crystal.
- 30. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 29, wherein said polymer precursor to be treated in said filling step and said polymer·liquid crystal complex forming step is composed of polymerizable monomer and polymerizable oligomer, and further at least one of the polymerizable oligomer and the polymerizable monomer has a polar group.
- 31. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 30, wherein said polar group is at least one group selected from the group consisting of a hydroxyl group, a carboxyl group and an imino group.
- 32. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 29, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by the method of said polymer·liquid crystal being irradiated with ultraviolet.
- 33. A method of producing a polymer dispersion type liquid crystal display element, in which a polymer·liquid crystal complex in which droplets of liquid crystal are dispersed in a polymer compound is filled in a space between a pair of electrodes supported by substrates and covered with insulating films made of polyamino acid, polyamino acid derivative or protein; and surface tension γ LC of said liquid crystal and critical surface tension γ F of said insulating films meet the relation of Expression 4-3:0<γLC−γF<1·dyne/cm Expression 4-3, said method comprising:the filling step in which a polymer·liquid crystal, including a liquid crystal and a polymer precursor, from which a polymer compound which allows the relation of Expression 4-4 to hold between said liquid crystal and said polymer compound is formed by polymerization, is filled in a space between said pair of electrodes, and the polymer·liquid crystal complex forming step in which said polymer precursor in said polymer·liquid crystal, after filled, is polymerized to form said polymer compound which allows the relation of the Expression 4-4 to hold, while also polymer·liquid crystal complex in which said droplets of liquid crystal are dispersed in the formed polymer compound is formed: γP>γLC Expression 4-4, where γ P is critical surface tension of the polymer compound and γ LC is surface tension of the liquid crystal.
- 34. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 33, wherein said polymer precursor to be treated in said filling step and said polymer·liquid crystal complex forming step is composed of polymerizable monomer and polymerizable oligomer, and further at least one of the polymerizable oligomer and the polymerizable monomer has a polar group.
- 35. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 34, wherein said polar group is at least one group selected from the group consisting of a hydroxyl group, a carboxyl group and an imino group.
- 36. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 33, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by the method of said polymer·liquid crystal being irradiated with ultraviolet.
- 37. A method of producing a polymer dispersion type liquid crystal display element as set, forth in claim 2, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by placing said polymer precursor·liquid crystal mixture between said pair of substrates being irradiated with ultraviolet.
- 38. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 3, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by placing said polymer precursor·liquid crystal mixture between said pair of substrates being irradiated with ultraviolet.
- 39. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 6, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by irradiating said polymer precursor·liquid crystal mixture with ultraviolet.
- 40. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 7, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by irradiating said polymer precursor·liquid crystal mixture with ultraviolet.
- 41. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 10, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by irradiating said polymer precursor·liquid crystal mixture with ultraviolet.
- 42. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 11, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by irradiating said polymer precursor·liquid crystal mixture with ultraviolet.
- 43. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 14, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by irradiating said polymer precursor·liquid crystal mixture with ultraviolet.
- 44. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 15, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by irradiating said polymer precursor·liquid crystal mixture with ultraviolet.
- 45. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 18, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by irradiating said polymer precursor·liquid crystal mixture with ultraviolet.
- 46. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 19, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by irradiating said polymer precursor·liquid crystal mixture with ultraviolet.
- 47. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 22, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by irradiating said polymer precursor·liquid crystal mixture with ultraviolet.
- 48. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 23, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by irradiating said polymer precursor·liquid crystal mixture with ultraviolet.
- 49. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 26, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by irradiating said polymer precursor·liquid crystal mixture with ultraviolet.
- 50. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 27, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by irradiating said polymer precursor·liquid crystal mixture with ultraviolet.
- 51. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 30, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by irradiating said polymer precursor·liquid crystal mixture with ultraviolet.
- 52. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 31, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by irradiating said polymer precursor·liquid crystal mixture with ultraviolet.
- 53. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 34, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by irradiating said polymer precursor·liquid crystal mixture with ultraviolet.
- 54. A method of producing a polymer dispersion type liquid crystal display element as set forth in claim 35, wherein said polymerization in said polymer·liquid crystal complex forming step is produced by irradiating said polymer precursor·liquid crystal mixture with ultraviolet.
Priority Claims (5)
Number |
Date |
Country |
Kind |
8-242755 |
Sep 1996 |
JP |
|
8-310335 |
Nov 1996 |
JP |
|
8-317509 |
Nov 1996 |
JP |
|
8-341013 |
Dec 1996 |
JP |
|
9-113782 |
May 1997 |
JP |
|
Parent Case Info
This is a Continuation of application Ser. No. 09/068,451 filed May 8, 1998.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
5641426 |
Nerad et al. |
Jun 1997 |
|
5867238 |
Miller et al. |
Feb 1999 |
|
Foreign Referenced Citations (11)
Number |
Date |
Country |
3-46620 |
Feb 1991 |
JP |
3-107819 |
May 1991 |
JP |
4-186221 |
Jul 1992 |
JP |
4-329517 |
Nov 1992 |
JP |
4-309922 |
Nov 1992 |
JP |
5-127174 |
May 1993 |
JP |
5-203931 |
Aug 1993 |
JP |
5-303083 |
Nov 1993 |
JP |
6-110042 |
Apr 1994 |
JP |
6-202086 |
Jul 1994 |
JP |
7-77683 |
Mar 1995 |
JP |