Claims
- 1. A compound of formula (I):
- 2. The compound of claim 1, wherein each of R5 and R6, independently, is aryl.
- 3. The compound of claim 2, wherein each of R5 and R6 is phenyl.
- 4. The compound of claim 2, wherein each of R5 and R6 is p-tolyl.
- 5. The compound of claim 2, wherein one of R5 and R6 is phenyl and the other is naphthyl.
- 6. The compound of claim 1, wherein R5 and R6, together with the N atom they are attached to, are heteroaryl.
- 7. The compound of claim 6, wherein R5 and R6, together with the N atom they are attached to, are carbazolyl.
- 8. The compound of claim 1, wherein each of R2 and R3, independently, is aryl.
- 9. The compound of claim 8, wherein each of R2 and R3 is phenyl.
- 10. The compound of claim 1, wherein each of R1 and R4, independently, is alkyl.
- 11. The compound of claim 10, wherein each of R1 and R4 is methyl.
- 12. The compound of claim 11, wherein each of R2 and R3, independently, is aryl.
- 13. The compound of claim 12, wherein each of R2 and R3 is phenyl.
- 14. The compound of claim 13, wherein each of R5 and R6 independently, is aryl.
- 15. The compound of claim 14, wherein each of R5 and R6 is phenyl.
- 16. The compound of claim 14, wherein each of R5 and R6 is p-tolyl.
- 17. The compound of claim 14, wherein one of R5 and R6 is phenyl and the other is naphthyl.
- 18. The compound of claim 13, wherein R5 and R6, together with the N atom they are attached to, are heteroaryl.
- 19. The compound of claim 18, wherein R5 and R6, together with the N atom they are attached to, are carbazolyl.
- 20. An electro-luminescence device, comprising:
an anode layer, a hole transporting layer, a light emitting layer, an electron transporting layer, and a cathode layer, wherein the anode layer, the hole transporting layer, the light emitting layer, the electron transporting layer, and the cathode layer are disposed in the above order; and the light emitting layer includes a compound of formula (I): 8each of R1, R2, R3, and R4, independently, is H, alkyl, alkenyl, cycloalkyl, aryl, or heteroaryl; and each of R5 and R6, independently, is aryl or heteroaryl, or R5 and R6, together with the N atom they are attached to, are heteroaryl.
- 21. The electro-luminescence device of claim 20, wherein each of R5 and R6, independently, is aryl.
- 22. The electro-luminescence device of claim 20, wherein R5 and R6, together with the N atom they are attached to, are heteroaryl.
- 23. The electro-luminescence device of claim 20, wherein each of R2 and R3, independently, is aryl.
- 24. The electro-luminescence device of claim 20, wherein each of R1 and R4, independently, is alkyl.
- 25. The electro-luminescence device of claim 24, wherein each of R1 and R4 is methyl.
- 26. The electro-luminescence device of claim 25, wherein each of R2 and R3 is phenyl.
- 27. The electro-luminescence device of claim 26, wherein each of R5 and R6 is phenyl.
- 28. The electro-luminescence device of claim 26, wherein each of R5 and R6 is p-tolyl.
- 29. The electro-luminescence device of claim 26, wherein one of R5 and R6 is phenyl and the other is naphthyl.
- 30. The electro-luminescence device of claim 26, wherein R5 and R6, together with the N atom they are attached to, are carbazolyl.
- 31. A white light emitting electro-luminescence device, comprising:
an anode layer, a hole transport layer, a light emitting layer, an electron transport layer, and a cathode layer, wherein the light emitting layer comprises a blue light emitting layer and a red light emitting layer; the anode layer, the hole transporting layer, the blue light emitting layer, the red light emitting layer, the electron transporting layer, and the cathode layer are disposed in the above order; and the blue light emitting layer includes a compound of 9in which each of R1-R4 and R, independently, is H, alkyl, alkenyl, cycloalkyl, aryl, or heteroaryl.
- 32. The device of claim 31, wherein the red light emitting layer is made of a host material with a guest component uniformly dispersed in the host material, and the electron transporting layer is made of the same host material.
- 33. The device of claim 32, further comprising a green light emitting layer, wherein the green light emitting layer is interposed between the blue light emitting layer and the red light emitting layer, and is also made of the same host material.
- 34. The device of claim 32, wherein the host material is a metal oxinoid compound.
- 35. The device of claim 34, wherein the host material is aluminum trisoxine.
- 36. The device of claim 35, wherein the host material is tirs(8-hydroxyquinolinolate) aluminum.
- 37. The device of claim 32, wherein the guest component is a fluorescent compound.
- 38. The device of claim 37, wherein the guest compound is a dicyanomethlylenepyran or dicyanomethylenethiopyran dye.
- 39. The device of claim 38, wherein the guest compound is 4-(dicyanomethylene)-2-methyl-6-(4-dimethylaminostyryl)-4H-pyran.
- 40. The device of claim 32, wherein each of R2, R3, and R, independently, is aryl.
- 41. The device of claim 40, wherein each of R2 and R3 is phenyl.
- 42. The device of claim 40, wherein each of R1 and R4, independently, is alkyl.
- 43. The device of claim 42, wherein each of R1 and R4 is methyl.
- 44. The device of claim 43, wherein each of R2 and R1 is phenyl.
- 45. The device of claim 44, wherein R is biphenyl.
- 46. The device of claim 44, wherein R is 4-(N,N-di-phenyl)aminophenyl.
- 47. The device of claim 44, wherein R is 4-(N,N-di-p-tolyl)aminophenyl.
- 48. The device of claim 44, wherein R is 4-(N-phenyl-N-naphthalene-1-yl)aminophenyl.
- 49. The device of claim 44, wherein the guest compound is a dicyanomethylenepyran or dicyanomethylenethiopyran dye.
- 50. The device of claim 49, wherein the host material is tirs(8-hydroxyquinolinolate)aluminum.
- 51. The device of claim 50, wherein the guest compound is 4-(dicyanomethylene)-2-methyl-6-(4-dimethylaminostyryl)-4H-pyran.
- 52. The device of claim 33, wherein the green light emitting layer has a thickness of 0 to 15 nm.
- 53. The device of claim 52, wherein the blue light emitting layer has a thickness of 2 to 15 nm.
- 54. The device of claim 52, wherein the red light emitting layer contains 0.01 to 10% by weight the guest component.
- 55. The device of claim 54, wherein the red light emitting layer has a thickness of 2 to 15 nm.
- 56. The device of claim 55, wherein the blue light emitting layer has a thickness of 2 to 15 nm.
RELATED APPLICATION
[0001] This application claims priority to U.S. Provisional Application Serial No. 60/335,819, filed Nov. 14, 2001, the contents of which are incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60335819 |
Nov 2001 |
US |