Claims
- 1. An organophotoreceptor comprising an electrically conductive substrate having a surface; a discrete inner photoconductive layer adjacent said surface; and a discrete outer photoconductive layer adjacent said inner photoconductive layer with the inner photoconductive layer between the outer photoconductive layer and said electrically conductive substrate, wherein the composition of said inner photoconductive layer is different from the composition of said outer conductive layer.
- 2. An organophotoreceptor according to claim 1 wherein said inner photoconductive layer comprises a first polymer binder and a first charge generating compound, and said outer photoconductive layer comprises a second polymer binder and a second charge generating compound.
- 3. An organophotoconductor accorpding to claim 2 wherein said inner photoconductive layer comprises no more than about 45 percent by weight of said first polymer binder and said outer photoconductive layer comprises at least about 45 percent by weight of said second polymer binder.
- 4. An organophotoreceptor according to claim 3 wherein the amount of said second polymer binder is not less than 60% by weight.
- 5. An organophotoreceptor according to claim 2 wherein said first polymer binder has the same composition as said second polymer binder.
- 6. An organophotoreceptor according to claim 5 wherein said first charge generating compound has the same chemical composition as said second charge generating compound and wherein said inner photoconductive layer has a different concentration of said first charge generating compound from the concentration of the second charge generation compound in said outer photoconductive layer.
- 7. An organophotoreceptor according to claim 1 wherein said organophotoreceptor is in the form of a drum.
- 8. An organophotoreceptor according to claim 1 wherein said inner photoconductive layer further comprises a first charge transport compound.
- 9. An organophotoreceptor according to claim 8 wherein said inner photoconductive layer further comprises a first electron transport compound.
- 10. An organophotoreceptor according to claim 1 wherein said inner photoconductive layer further comprises a first electron transport compound.
- 11. An organophotoreceptor according to claim 1 wherein said outer photoconductive layer further comprises a second electron transport compound.
- 12. An organophotoreceptor according to claim 1 wherein said outer photoconductive layer further comprises a second charge transport compound.
- 13. An organophotoreceptor according to claim 1 wherein said inner photoconductive layer further comprises a UV stabilizer.
- 14. An organophotoreceptor according to claim 1 wherein said outer photoconductive layer further comprises a UV stabilizer.
- 15. An electrophotographic imaging apparatus comprising:
(a) a plurality of support rollers; and (b) an organophotoreceptor operably coupled to said support rollers with motion of said support rollers resulting in motion of said organophotoreceptor, said organophotoreceptor comprising: an electrically conductive substrate having a surface and an inner photoconductive layer adjacent said surface, and an outer photoconductive layer adjacent said inner photoconductive layer, wherein said inner photoconductive layer comprises a first charge generation compound and said outer photoconductive layer comprises a second charge generation compound and wherein said inner photoconductive layer has a different chemical composition from said outer photoconductive layer.
- 16. An electophotographic imaging apparatus according to claim 15 wherein said inner photoconductive layer comprises a first binder in an amount not more than 45% by weight of said inner photoconductive layer and said outer photoconductive layer comprises a second binder in an amount not less than 45% by weight of said outer photoconductive layer.
- 17. An electrophotographic imaging apparatus according to claim 16 wherein said inner photoconductive layer comprises a charge transport compound.
- 18. An electrophotographic imaging apparatus according to claim 15 wherein said organophotoreceptor is in the form of a drum.
- 19. An electrophotographic imaging apparatus according to claim 15 wherein said inner photoconductive layer further comprises a first electron transport compound.
- 20. An electrophotographic imaging apparatus according to claim 15 wherein said outer photoconductive layer further comprises a second electron transport compound.
- 21. An electrophotographic imaging apparatus according to claim 15 wherein said outer photoconductive layer further comprises a second charge transport compound.
- 22. An electrophotographic imaging apparatus according to claim 15 wherein said inner photoconductive layer further comprises a UV stabilizer.
- 23. An electrophotographic imaging apparatus according to claim 15 wherein said outer photoconductive layer further comprises a UV stabilizer.
- 24. An electrophotographic imaging apparatus according to claim 15 wherein said inner photoconductive layer and said outer photoconductive layer are discrete layers.
- 25. An electrophotographic imaging apparatus according to claim 15 wherein said inner photoconductive layer and said outer photoconductive layer are portions of a gradient layer.
- 26. An electrophotographic imaging process comprising:
(a) applying an electrical charge to a surface of an organophotoreceptor comprising an electrically conductive substrate having a surface; an inner photoconductive layer on said surface of said electrically conductive substrate; and an outer photoconductive layer on said inner photoconductive layer, wherein said inner photoconductive layer comprises a first charge generating compound and said outer photoconductive layer comprises a second charge generating compound, and wherein said first photoconductive layer has a different chemical composition from said second photoconductive layer; (b) imagewise exposing said surface of said organophotoreceptor to radiation to dissipate charge in selected areas and thereby form a pattern of charged and uncharged areas on said surface; (c) contacting said surface with a toner to create a toned image; and (d) transferring said toned image to a substrate.
- 27. An electrophotographic imaging process according to claim 26 wherein said toner comprises a liquid toner comprising a dispersion of colorant particles in an organic liquid.
- 28. An electrophotographic imaging process according to claim 26 wherein said organophotoreceptor is in the form of a drum.
- 29. An electrophotographic imaging process according to claim 26 wherein said inner photoconductive layer comprises a first binder in an amount not more than 45% by weight of said inner photoconductive layer and a charge transport compound, and said outer photoconductive layer comprises a second binder in an amount not less than 45% by weight of said outer photoconductive layer.
- 30. An electrophotographic imaging process according to claim 29 wherein said inner photoconductive layer further comprises a first electron transport compound
- 31. An electrophotographic imaging process according to claim 29 wherein said outer photoconductive layer further comprises a second electron transport compound.
- 32. An electrophotographic imaging process according to claim 29 wherein said outer photoconductive layer further comprises a second charge transport compound.
- 33. An electrophotographic imaging process according to claim 29 wherein said inner photoconductive layer further comprises a UV stabilizer.
- 34. An electrophotographic imaging process according to claim 29 wherein said outer photoconductive layer further comprises a UV stabilizer.
- 35. An organophotoreceptor comprising an electrically conductive substrate having a surface and a photoconductive layer adjacent said surface wherein the photoconductive layer has a composition gradient.
- 36. An organophotoreceptor according to claim 35 wherein said composition gradient comprises a charge transport compound with a higher concentration at the inner portion of the layer relative to the outer portion of the layer.
- 37. An organophotoreceptor according to claim 35 wherein said composition gradient comprises a charge generating compound with a higher concentration at the outer portion of the layer relative to the inner portion of the layer.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to copending U.S. Provisional Patent Application serial No. 60/407,271 filed on Aug. 30, 2002 to Zhu et al., entitled “Organophotoreceptor With Two Single Photoconductive Layers,” incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60407271 |
Aug 2002 |
US |