Claims
- 1. A member comprising:
a supporting layer and a single photogenerating layer comprising particles comprising a first sensitivity pigment and a second sensitivity pigment dispersed in
a matrix comprising
a hole transport molecule, an electron transport molecule, and a film forming binder.
- 2. A member according to claim 1 wherein the electrophotographic photoconductive insulating layer comprises from about 0.1 percent to about 10 percent by weight of each of the first and second photosensitivity pigments, based on the total weight of the photogenerating layer.
- 3. A member according to claim 1 wherein the member is free of a charge blocking layer between the supporting layer and the photogenerating layer.
- 4. A member according to claim 1 wherein the member is free of a charge generating layer between the supporting layer and the photogenerating layer.
- 5. A member according to claim 1 wherein the photogenerating layer has a thickness from about 3 micrometers to about 50 micrometers after drying.
- 6. A member according to claim 1 wherein the first photosensitivity pigment is selected from the group consisting of Type V hydroxygallium phthalocyanine and X polymorph metal free phthalocyanine.
- 7. A member according to claim 1 wherein the photogenerating layer has a thickness of from about 10 micrometers to about 30 micrometers after drying.
- 8. A member according to claim 1 wherein the photogenerating layer has a thickness of from about 20 micrometers to about 25 micrometers after drying.
- 9. A member according to claim 1 wherein the first photosensitivity pigment is Type V hydroxygallium phthalocyanine.
- 10. A member according to claim 1 wherein the second photosensitivity pigment is x polymorph metal free phthalocyanine.
- 11. A member according to claim 1 wherein the diameter of a polytetrafluroethylene particle is from about 10 nanometers to about 50 micrometers.
- 12. A member according to claim 1 wherein the ratio of the first photosensitivity pigment to the second photosensitivity pigment is from about 0.01 to about 100
- 13. A member according to claim 11 wherein the diameter of a polytetrafluroethylene particle is from about 15 micrometer to about 40 micrometers.
- 14. A member according to claim 11 wherein the diameter of a polytetrafluroethylene particle is from about 20 to about 30 micrometers in diameter.
- 15. A member according to claim 1 wherein a photogenerating pigment is selected from the group consisting of Type V hydroxygallium phthalocyanine, x-polymorph metal free phthalocyanine, and chlorogallium phthalocyanine.
- 16. A member according to claim 1 wherein the pigment is Type V hydroxygallium phthalocyanine.
- 17. A member according to claim 1 wherein the pigment is a mixture of hydroxygallium phthalocyanine and x-polymorph metal free phthalocyanine.
- 18. A member in accordance with claim 1 wherein said photogenerating component absorbs light of a wavelength of from about 370 to about 950 nanometers.
- 19. A member according to claim 1 wherein the film forming binder is selected from the group consisting of polyesters, polyvinyl butyrals, polycarbonates, polystyrene-b-polyvinyl pyridine, poly(vinyl butyral), poly(vinyl carbazole), poly(vinyl chloride), polyacrylates, polymethacrylates, copolymers of vinyl chloride and vinyl acetate, phenoxy resins, polyurethanes, poly(vinyl alcohol), polyacrylonitrile, and polystyrene.
- 20. A member according to claim 1 wherein the film forming binder is a polycarbonate.
- 21. A member according to claim 1 wherein the photogenerating layer comprises from about 10 percent to about 75 percent by weight of the film forming binder, based on the total weight of the photogenerating layer after drying.
- 22. A member according to claim 1 wherein the photogenerating layer comprises from about 0.05 percent to about 30 percent by weight of Type V hydroxygallium phthalocyanine, based on the total weight of the photogenerating layer after drying.
- 23. A member according to claim 1 wherein the photogenerating layer comprises from about 0.1 percent to about 10 percent by weight of Type V hydroxygallium phthalocyanine, based on the total weight of the photogenerating layer after drying.
- 24. A member according to claim 1 wherein the hole transport molecule is an aryl amine represented by:
- 25. A member according to claim 1 wherein the hole transport molecule is selected from the group consisting of N,N′-diphenyl-N,N′-bis(3-methylphenyl)-[1,1′-biphenyl]-4,4′diamine: N,N′-diphenyl-N,N′-bis(alkylphenyl)-1,1-biphenyl-4,4′-diamine: Tritolylamine: N,N′-bis-(3,4-dimethylphenyl)-4-biphenyl amine: N,N′,bis-(4-methylphenyl)-N,N″-bis(4-ethylphenyl)-1,1′-3,3′-dimethylbiphenyl)-4,4′-diamine: phenanthrene diamine, arylamine, enamine, and stilbene molecules.
- 26. A member according to claim 25 wherein the arylamine is N,N′-diphenyl-N,N′-bis(3-methylphenyl)-[1,1′-biphenyl]-4,4′-diamine.
- 27. A member according to claim 1 wherein the photogenerating layer comprises from about 5 percent to about 50 percent by weight of the arylamine hole transporter, based on the combined weight of the arylamine hole transport molecules and the electron transporter molecules in the photogenerating layer.
- 28. A member according to claim 1 wherein the electron transport molecule is selected from the group consisting of: 1,1′-dioxo-2-(4-methylphenyl)-6-phenyl-4-(dicayanomethylidene)thiopyran: Butoxy carbonyl fluorenylidene malononitrile: Carboxybenzylnaphthaquinone: Tetra (t-butyl) diphenoquinone.
- 29. A member according to claim 1 wherein the electron transport molecule is a carboxlfluorenone malonitrile (CFM) represented by:
- 30. A member according to claim 24 wherein the generating layer comprises from about 1 percent to about 40 percent by weight of the electron transporter, based on the combined weight of the arylamine hole transporter molecules and the electron transporter molecules in the photogenerating layer.
- 31. A member according to claim 24 wherein the combined weight of the arylamine hole transporter molecules and the electron transporter molecules in the photogenerating layer is from about 20 percent to about 80 percent by weight, based on the total weight of the electrophotographic photoconductive insulating photogenerating layer after drying.
- 32. An imaging process comprising
providing a member comprising
a supporting layer and an photogenerating layer, the photogenerating layer comprising particles comprising a first sensitivity pigment and a second sensitivity pigment, depositing a uniform electrostatic charge on the imaging member, exposing the imaging member to activating radiation in image configuration to form an electrostatic latent image, and developing the latent image with electrostatically attractable marking particles to form a toner image in conformance to the latent image.
CROSS REFERENCE TO COPENDING APPLICATION
[0001] U.S. patent application Ser. No. 09/302524, filed in the names of D. Murti et al on Apr. 30, 1999 (Attorney Docket No. D/98508), discloses a photoconductive imaging member which is comprised of a supporting substrate, and thereover a layer comprised of a photogenerator hydroxygallium component, a charge transport component, and an electron transport component. U.S. patent application Ser. No. 09/627,283, filed in the names of Lin, et al, on Jul. 28, 2000 (Attorney Docket No. D/A0424), discloses an imaging member having a single electrophotographic photoconductive insulting layer. The entire disclosures of each of these Patent Applications is incorporated herein by reference.