Claims
- 1. An organic light emitting device comprising, in order:
a substrate; an anode layer; a hole transporting layer which is an emissive layer; a blocking layer; an electron transporting layer; and a cathode layer; wherein, the hole transporting layer comprises a polymeric material and an emissive material, wherein the emissive material is an emissive dopant or the emissive material is the polymeric material itself, the blocking layer comprises a small-molecule material, the electron transporting layer comprises a small-molecule material, and substantially all light emission comes from the hole transporting layer.
- 2. The organic light emitting device of claim 1, wherein the hole transporting layer comprises an emissive dopant.
- 3. The organic light emitting device of claim 2, wherein the emissive dopant emits light by fluorescence.
- 4. The organic light emitting device of claim 2, wherein the emissive dopant emits light by phosphorescence.
- 5. The organic light emitting device of claim 1, wherein the blocking is a hole blocking layer.
- 6. The organic light emitting device of claim 1, wherein the blocking layer is an exciton blocking layer.
- 7. The organic light emitting device of claim 1, wherein the blocking layer comprises BCP.
- 8. The organic light emitting device of claim 1, wherein the polymeric material is PVK.
- 9. An organic light emitting device comprising, in order:
a substrate an anode layer; a first polymer layer; a second polymer layer; a blocking layer; an electron transporting layer; and a cathode layer; wherein, the first polymer layer is a hole injection layer, the second polymer layer is an emissive layer comprising an emissive material, wherein the emissive material is an emissive dopant or the emissive material is an emissive polymeric material, the blocking layer comprises a small molecule material, the electron transporting layer comprises a small molecule material, and substantially all light emission comes from the emissive layer.
- 10. The organic light emitting device of claim 9, wherein the second polymer layer comprises an emissive dopant.
- 11. The organic light emitting device of claim 10, wherein the emissive dopant emits light by fluorescence.
- 12. The organic light emitting device of claim 10, wherein the emissive dopant emits light by phosphorescence.
- 13. The organic light emitting device of claim 9, wherein the hole injection layer is PEDOT:PSS.
- 14. The organic light emitting device of claim 9, wherein the hole injection layer is PANI.
- 15. The organic light emitting device of claim 9, wherein the blocking layer is a hole blocking layer.
- 16. The organic light emitting device of claim 9, wherein the blocking layer is an exciton blocking layer.
- 17. The organic light emitting device of claim 9, wherein the blocking layer comprises BCP.
- 18. An organic light emitting device for producing electroluminescence comprising in order:
a substrate an anode layer; a hole transporting layer which is an emissive layer; a blocking layer; and a cathode layer; wherein, the hole transporting layer comprises a polymeric material and an emissive material wherein the emissive material is an emissive dopant or the emissive material is an emissive polymeric material, the blocking layer comprises a small molecule material and wherein the blocking layer is electron transporting, and substantially all light emission comes from the hole transporting layer.
- 19. An organic light emitting device for producing electroluminescence comprising in order:
a substrate an anode layer; a first polymer layer; a second polymer layer; a blocking layer; and a cathode layer; wherein, the first polymer layer is a hole injection layer, the second polymer layer is an emissive layer comprising an emissive material, wherein the emissive material is an emissive dopant or the emissive material is an emissive polymeric material, the blocking layer comprises a small molecule material, and substantially all light emission comes from the emissive layer.
- 20. A method of fabricating a display comprising an array of OLED structures comprising:
preparing a substrate coated with an anode layer; depositing a polymeric host layer over the anode layer; pattern depositing an array of emissive dopants onto the polymeric host layer so as to produce an array of doped regions in the polymeric host layer; depositing a blocking layer over polymeric host layer; depositing an electron transporting layer over the blocking layer; and depositing a cathode layer over the blocking layer;
wherein, the blocking layer comprises a small-molecule material and the electron transporting layer comprises a small-molecule material.
- 21. The method of claim 20, wherein the polymeric host layer comprises a hole transporting material.
- 22. The method of claim 20, wherein the doped regions produce emission in at least two different color regions of the visible spectrum.
- 23. The method of claim 20, wherein the doped regions produce emission in three different color regions of the visible spectrum.
- 24. The method of claim 20, wherein the polymeric host layer comprises PVK.
- 25. The method of claim 20, wherein the method further comprises depositing a polymeric hole injection layer over the anode layer and then depositing the polymeric host layer over the hole injection layer.
- 26. The method of claim 25, wherein the hole injection layer comprises PEDOT:PSS.
- 27. The method of claim 25, wherein the hole injection layer comprises PANI.
- 28. The method of claim 20, wherein the pattern deposition step comprises an ink jet printing step.
- 29. The method of claim 20, wherein the pattern deposition step comprises locally doping the polymeric host layer by dye diffusion.
- 30. The method of claim 20, wherein the blocking layer is a hole blocking layer.
- 31. The method of claim 20, wherein the blocking layer is an exciton blocking layer.
- 32. The method of claim 20, wherein the blocking layer comprises BCP.
- 33. A method of fabricating a display comprising an array of OLED structures comprising:
preparing a substrate coated with an anode layer; pattern depositing an array of emissive polymeric regions over the anode layer; depositing a blocking layer over the array of emissive polymer regions; depositing an electron transporting layer over the blocking layer; and depositing a cathode layer over the electron transporting layer; wherein the blocking layer comprises a small-molecule material and the electron transporting layer comprises a small-molecule material.
- 34. The method of claim 33, wherein the emissive polymeric regions comprise a host polymer and an emissive dopant.
- 35. The method of claim 33, wherein the emissive polymeric regions produce emission in at least two different color regions of the visible spectrum.
- 36. The method of claim 33, wherein the emissive polymeric regions produce emission in three different color regions of the visible spectrum.
- 37. The method of claim 33, wherein the emissive polymeric regions comprise PVK.
- 38. The method of claim 33, wherein the method further comprises depositing a polymeric hole injection layer over the anode layer and then depositing the polymeric emissive regions over the hole injection layer.
- 39. The method of claim 38, wherein the hole injection layer comprises PEDOT:PSS.
- 40. The method of claim 38, wherein the hole injection layer comprises PANI.
- 41. The method of claim 33, wherein the pattern deposition step comprises an ink jet printing step.
- 42. The method of claim 33, wherein the pattern deposition step comprises a laser induced thermal imaging step.
- 43. The method of claim 33, wherein the blocking layer is a hole blocking layer.
- 44. The method of claim 33, wherein the blocking layer is an exciton blocking layer.
- 45. The method of claim 33, wherein the blocking layer comprises BCP.
- 46. A method of fabricating a display comprising an array of OLED structures comprising:
preparing a substrate coated with an anode layer; depositing a polymeric host layer over the anode layer; pattern depositing an array of emissive dopants onto the polymeric host layer so as to produce an array of doped regions in the polymeric host layer; depositing a blocking layer over polymeric host layer; and depositing a cathode layer over the blocking layer; wherein, the blocking layer comprises a small molecule material and the blocking layer is electron transporting.
- 47. The method of claim 46, wherein the method further comprises depositing a polymeric hole injection layer over the anode layer and then depositing the polymeric host layer over the hole injection layer.
- 48. A method of fabricating a display comprising an array of OLED structures comprising:
preparing a substrate coated with an anode layer; pattern depositing an array of emissive polymeric regions over the anode layer; depositing a blocking layer over the array of emissive polymer regions; and depositing a cathode layer over the blocking layer; wherein the blocking layer comprises a small molecule material and the blocking layer is electron transporting.
- 49. The method of claim 48, wherein the method further comprises depositing a polymeric hole injection layer over the anode layer and then pattern depositing the array of emissive polymeric regions over the hole injection layer.
RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application Serial No. 60/299,823 filed Jun. 21, 2001, the entire disclosure of which is expressly incorporated herein by reference.
STATEMENT OF GOVERNMENT INTERESTS
[0002] The present invention was made under Federal Contract Grant No. DARPA 341-4124, and the government may have certain rights to the subject invention.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60299823 |
Jun 2001 |
US |