Claims
- 1. A thin film electroluminescence device comprising an anode, a cathode and a charge injection layer disposed between said anode and said cathode, said charge injection layer being smooth, uniform and pinholeless and consisting essentially of a heat resistant polymer thin film having groups with a charge injection layer function as repeating units, said polymer thin film having a thickness of not more than 0.5 .mu.m, and said polymer thin film being prepared by a vacuum evaporation polymerization method.
- 2. The device as claimed in claim 1, wherein the polymer thin film is made from a polymer selected from the group consisting of polyimide, polyamide, polyamidoimide, polyurea and polyazomethine.
- 3. The device as claimed in claim 1, wherein the polymer thin film has a decomposition temperature of at least 300.degree. C. and a glass transition temperature of at least 200.degree. C.
- 4. The device as claimed in claim 2, wherein the polymer is a polyimide of the formula: ##STR16## wherein X is an organic group containing an aromatic group; Y is an organic compound radical having a charge injection function which is capable of injecting positive holes or electrons when said Y is interposed between an anode and a cathode upon application of an electric field and n is an integer indicating a degree of polymerization.
- 5. The device as claimed in claim 4, wherein said Y is selected from the group consisting of phthalocyamine compounds, porphyrin compounds, triphenylamine compounds and oxadizole compounds.
- 6. The device as claimed in claim 4, wherein said X is selected from the group consisting of ##STR17##
- 7. A thin film electroluminescence device comprising an anode, a cathode and a charge transport layer disposed between said anode and said cathode, said charge transport layer being smooth, uniform and pinholeless and consisting essentially of a heat resistant polymer thin film having groups with a charge transport layer function as repeating units, said polymer thin film having a thickness of not more than 0.5 .mu.m and said polymer thin film being prepared by a vacuum evaporation polymerization method.
- 8. The device as claimed in claim 7, wherein the polymer thin film is made from a polymer selected from the group consisting of polyimide, polyamide, polyamidoimide, polyurea and polyazomethine.
- 9. The device as claimed in claim 8, wherein the polymer is a polyimide of the formula: ##STR18## wherein X is an organic group containing an aromatic group; Y is an organic compound radical having a charge transport function which is capable if having transposed therein positive holes or electrons when said Y is interposed between an anode and a cathode upon application of an electric field and n is an integer indicating a degree of polymerization.
- 10. The device as claimed in claim 9, wherein said Y is selected from the group consisting of phthalocyanine compounds, porphyrin compounds, triphenylamine compounds and oxadizole compounds.
- 11. The device as claimed in claim 7, wherein the polymer thin film has a decomposition temperature of at least 300.degree. C. and a glass transition temperature of at least 200.degree. C.
- 12. A process for producing an organic thin film electroluminescence device which comprises:
- (a) forming a first electrode an a substrate,
- (b) forming a charge injection layer on said substrate,
- (c) forming a light emitting layer on said substrate, said light emitting layer having a light emitting function necessary for electroluminescence and
- (d) forming a second electrode on said substrate, said second electrode being opposite to said first electrode,
- said charge injection layer and said light emitting layer being disposed between said first electrode and said second electrode,
- wherein the forming of said charge injection layer is carried out by vacuum depositing a heat resistant polymer forming monomer and then polymerizing the monomer.
- 13. A process for producing an organic thin film electroluminescence device which comprises:
- (a) forming a first electrode on a substrate,
- (b) forming a charge transport layer on said substrate,
- (c) forming a light emitting layer on said substrate, said light emitting layer having a light emitting function necessary for electroluminescence and
- (d) forming a second electrode on said substrate, said second electrode which is being opposite to said first electrode,
- said charge transport layer and said light emitting layer being disposed between said first electrode and said second electrode,
- wherein the forming of said charge transport layer is carried out by vacuum depositing a heat resistant polymer forming monomer and then polymerizing the monomer.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2-073484 |
Mar 1990 |
JPX |
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Parent Case Info
This is a division of application Ser. No. 07/669,754 filed Mar. 15, 1991 now U.S. Pat. No. 5,443,921.
US Referenced Citations (16)
Foreign Referenced Citations (1)
Number |
Date |
Country |
A-0398764 |
Nov 1990 |
EPX |
Divisions (1)
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Number |
Date |
Country |
Parent |
669754 |
Mar 1991 |
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