Claims
- 1. A photoconductive imaging member comprised of a supporting substrate, and thereover a single layer comprised of a mixture of a photogenerator component, a charge transport component, an electron transport component, and a polymer binder, and wherein the charge transport component is selected from the group consisting of 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; N,N′-diphenyl-N,N′-bis(alkylphenyl)-1,1-biphenyl-4,4′-diamine; and tri-p-tolylamine; and wherein the electron transport component is selected from the group consisting of a carbonylfluorenone malononitrile of the formula
- 2. An imaging member in accordance with claim 1 wherein said single layer is of a thickness of from about 5 to about 60 microns.
- 3. An imaging member in accordance with claim 1 wherein the amount for each of said components in said single layer is from about 0.05 weight percent to about 30 weight percent for the photogenerating component; from about 10 weight percent to about 75 weight percent for the charge transport component, and from about 10 weight percent to about 75 weight percent for the electron transport component; and wherein the total of said components is about 100 percent; and wherein said layer components are dispersed in from about 10 weight percent to about 75 weight percent of said polymer binder; and optionally wherein said layer is of a thickness of from about 15 to about 40 microns.
- 4. An imaging member in accordance with claim 1 wherein the amount for each of said components in the single layer mixture is from about 0.5 weight percent to about 5 weight percent for the photogenerating component; from about 30 weight percent to about 50 weight percent for the charge transport component; and from about 5 weight percent to about 30 weight percent for the electron transport component; and which components are contained in from about 30 weight percent to about 50 weight percent of a polymer binder.
- 5. An imaging member in accordance with claim 1 wherein the thickness of said layer is from about 5 to about 35 microns.
- 6. An imaging member in accordance with claim 1 wherein said single layer components are dispersed in said polymer binder, and wherein said charge transport is comprised of hole transport molecules.
- 7. An imaging member in accordance with claim 6 wherein said binder is present in an amount of from about 50 to about 90 percent by weight, and wherein the total of all components of said photogenerating component, said charge transport component, said binder, and said electron transport component is about 100 percent.
- 8. An imaging member in accordance with claim 6 wherein the binder is selected from the group consisting of polyesters, polyvinyl butyrals, polycarbonates, polystyrene-b-polyvinyl pyridines, and polyvinyl formulas.
- 9. An imaging member in accordance with claim 1 wherein said photogenerating component absorbs light of a wavelength of from about 370 to about 950 nanometers.
- 10. An imaging member in accordance with claim 1 wherein the supporting substrate is comprised of a conductive substrate comprised of a metal.
- 11. An imaging member in accordance with claim 10 wherein the conductive substrate is aluminum, aluminized polyethylene terephthalate or titanized polyethylene terephthalate.
- 12. An imaging member in accordance with claim 1 wherein said charge transport component further comprises aryl amine molecules.
- 13. An imaging member in accordance with claim 12 wherein said charge transporting component is
- 14. An imaging member in accordance with claim 13 wherein alkyl contains from about 1 to about 10 carbon atoms, and wherein the charge transport is an aryl amine encompassed by said formula, and which amine is optionally dispersed in a resinous binder.
- 15. An imaging member in accordance with claim 13 wherein alkyl contains from 1 to about 5 carbon atoms.
- 16. An imaging member in accordance with claim 13 wherein alkyl is methyl, and wherein halogen is chloride.
- 17. An imaging member in accordance with claim 1 wherein said charge transport component is N,N′-diphenyl-N,N-bis(3-methyl phenyl)-1,1′-biphenyl-4,4′-diamine.
- 18. An imaging member in accordance with claim 1 wherein said electron transport component is comprised of a carbonylfluorenone malononitrile of the formula
- 19. An imaging member in accordance with claim 1 wherein said electron transport component is (4-n-butoxycarbonyl-9-fluorenylidene) malononitrile.
- 20. An imaging member in accordance with claim 1 wherein said electron transport component is
- 21. An imaging member in accordance with claim 1 wherein said binder is a film forming polymeric binder.
- 22. An imaging member in accordance with claim 1 wherein said electron transport is (4-n-butoxy carbonyl-9-fluorenylidene) malononitrile, and said charge transport is a hole transport of N,N′-diphenyl-N,N-bis(3-methyl phenyl)-1,1′-biphenyl-4,4″-diamine molecules.
- 23. An imaging member in accordance with claim 1 wherein said photogenerating component is a phthalocyanine possessing major peaks, as measured with an X-ray diffractometer, at Bragg angles (2 theta+/−0.2°)).
- 24. An imaging member in accordance with claim 1 wherein mixtures of said charge transport component, said electron transport component, and said photogenerating components are selected.
- 25. An imaging member in accordance with claim 1 wherein said photogenerating component is a chlorogallium phthalocyanine, or a hydroxygallium phthalocyanine.
- 26. An imaging member in accordance with claim 1 wherein said electron transport is a N,N′-bis(dialkyl)-1,4,5,8-naphthalenetetracarboxylic diimide or N,N′-bis(diaryl)-1,4,5,8-naphthalenetetracarboxylic diimide of the formula
- 27. An imaging member in accordance with claim 1 wherein said binder is a polycarbonate optionally with a weight average molecular weight of from about 500 to about 80,000.
- 28. An imaging member in accordance with claim 1 wherein said photogenerating component is present in an amount of from about 1 to about 3 weight percent; said charge transport is present in an amount of from about 25 to about 40 weight percent; said electron transport is present in an amount of from about 10 to about 20 weight percent; said binder is present in an amount of from about 40 to about 60 weight percent; and
wherein the total of said components is about 100 percent.
- 29. An imaging member in accordance with claim 1 wherein said photogenerating component is present in an amount of from about 1 to about 3 weight percent; said charge transport is present in an amount of from about 35 to about 40 weight percent; said electron transport is present in an amount of from about 10 to about 15 weight percent; said binder is present in an amount of from about 47 to about 50 weight percent; and wherein the total of said components is about 100 percent; and wherein said layer is of a thickness of from about 15 to about 40 microns.
- 30. An imaging member in accordance with claim 1 further containing an adhesive layer and a hole blocking layer.
- 31. An imaging member in accordance with claim 30 wherein said blocking layer is contained as a coating on a substrate, and wherein said adhesive layer is coated on said blocking layer.
- 32. An imaging member in accordance with claim 1 wherein said member comprises, in sequence, a supporting layer, and said single layer.
- 33. An imaging member in accordance with claim 1 wherein said binder is a polycarbonate, polystyrene-b-polyvinyl pyridine.
- 34. A member comprised in sequence of a supporting substrate, and thereover a single layer comprised of a mixture of a photogenerator component, a charge transport component, an electron transport component, and a polymer binder, and wherein the charge transport component is selected from the group consisting of 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; N,N′-diphenyl-N,N′-bis(alkylphenyl)-1,1-biphenyl-4,4′-diamine, and tri-p-tolylamine; and wherein the electron transport component is selected from the group consisting of
- 35. A photoconductive imaging member comprised of a supporting substrate, and thereover a single layer comprised of a mixture of a photogenerator component, a charge transport component, an electron transport component, and wherein the charge transport component is selected from the group consisting of 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; and N,N′-diphenyl-N,N′-bis(alkylphenyl)-1,1-biphenyl-4,4′-diamine, and wherein said electron transport component is carbonylfluorenone malononitrile of the formula
- 36. An imaging member in accordance with claim 35 wherein each of said aryls is a substituted aryl.
- 37. An imaging member in accordance with claim 35 wherein each aryl contains from 6 to about 30 carbon atoms; each alkyl contains from 1 to about 25 carbon atoms; each alkoxy contains from 1 to about 25 carbon atoms; and each halide is chloride.
- 38. An imaging member in accordance with claim 37 wherein aryl is phenyl, alkyl is methyl, and alkoxy is ethoxy or propoxy.
- 39. An imaging member in accordance with claim 35 wherein each aryl contains from 6 to about 18 carbon atoms; each alkyl contains from 1 to about 12 carbon atoms; each alkoxy contains from 1 to about 12 carbon atoms; and each halide is chloride.
- 40. An imaging member in accordance with claim 39 wherein aryl is phenyl or naphthyl, alkyl is methyl or ethyl, and alkoxy is ethoxy or propoxy.
- 41. An imaging member in accordance with claim 35 wherein said electron transport is of Formula I.
- 42. An imaging member in accordance with claim 35 wherein said electron transport is of Formula II.
- 43. An imaging member in accordance with claim 35 wherein said electron transport is of Formula III.
- 44. An imaging member in accordance with claim 35 wherein said electron transport is of Formula IV.
- 45. An imaging member in accordance with claim 35 wherein said electron transport is of Formula V.
- 46. An imaging member in accordance with claim 35 wherein said electron transport is of Formula VI.
- 47. An imaging member in accordance with claim 1 wherein each of said aryls is a substituted aryl, and wherein said substituents are alkyl, alkoxy, or halide.
- 48. An imaging member in accordance with claim 1 wherein each aryl contains from 6 to about 30 carbon atoms; each alkyl contains from 1 to about 25 carbon atoms; each alkoxy contains from 1 to about 25 carbon atoms; and each halide is chloride.
- 49. An imaging member in accordance with claim 1 wherein aryl is phenyl, alkyl is methyl, and alkoxy is ethoxy or propoxy.
- 50. An imaging member in accordance with claim 1 wherein said electron transport component is carbonylfluorenone malononitrile of the formula
- 51. An imaging member in accordance with claim 1 wherein said electron transport component is a nitrated fluorenone of the formula
- 52. An imaging member in accordance with claim 1 wherein said electron transport component is a 1,1′-dioxo-2-(aryl)-6-phenyl-4-(dicyanomethylidene)thiopyran of the formula
- 53. An imaging member in accordance with claim 1 wherein said electron transport component is a carboxybenzylnaphthaquinone of the alternative formulas
- 54. An imaging member in accordance with claim 1 wherein said electron transport component is a diphenoquinone of the formula
- 55. A method of imaging which comprises generating an electrostatic latent image on the imaging member of claim 1, developing the latent image, and transferring the developed electrostatic image to a suitable substrate.
RELATED PATENT APPLICATIONS
[0001] Illustrated in copending application U.S. Ser. No. 10/225,402, filed Aug. 20, 2002 on Benzophenone Bisimide Malononitrile Derivatives, the disclosure of which is totally incorporated herein by reference, is, for example, a compound having the Formula I
1
[0002] wherein:
[0003] R1 and R2 are independently selected from the group consisting of hydrogen, a hetero atom containing group and a hydrocarbon group that is optionally substituted at least once with a hetero atom moiety; and
[0004] R3, R4, R5, R6, R7, and R8 are independently selected from the group consisting of a nitrogen containing group, a sulfur containing group, a hydroxyl group, a silicon containing group, hydrogen, a halogen, a hetero atom containing group and a hydrocarbon group that is optionally substituted at least once with a hetero atom moiety.
[0005] Illustrated in copending application U.S. Ser. No. 10/144,147, filed May 10, 2002 on Imaging Members, the disclosure of which is totally incorporated herein by reference, is, for example, a photoconductive imaging member comprised of a supporting substrate, and thereover a single layer comprised of a mixture of a photogenerator component, a charge transport component, an electron transport component, and a polymer binder, and wherein the photogenerating component can be a metal free phthalocyanine.
[0006] Illustrated in copending application U.S. Ser. No. 09/302,524, filed on Apr. 30, 1999 on Photoconductive Members, the disclosure of which is totally incorporated herein by reference, is, for example, an ambipolar photoconductive imaging member comprised of a supporting substrate, and thereover a layer comprised of a photogenerator hydroxygallium component, a charge transport component, and an electron transport component.
[0007] Illustrated in copending application U.S. Ser. No. 09/627,283, filed Jul. 28, 2000 on Imaging Members Having a Single Electrophotographic Photoconductive Insulating Layer, the disclosure of which is totally incorporated herein by reference, is, for example, an imaging member comprising a member comprising
[0008] a supporting layer and a single electrophotographic photoconductive insulating layer, the electrophotographic photoconductive insulating layer comprising
[0009] particles comprising Type V hydroxygallium phthalocyanine dispersed in a matrix comprising
[0010] an arylamine hole transporter and
[0011] an electron transporter selected from the group consisting of N,N′-bis(1,2-dimethylpropyl)-1,4,5,8-naphthalenetetracarboxylic diimide represented by the following structural formula:
2
[0012] 1,1′-dioxo-2-(4-methylphenyl)-6-phenyl-4-(dicyanomethylidene)thiopyran represented by the following structural formula:
3
[0013] wherein each R is independently selected from the group consisting of hydrogen, alkyl with 1 to 4 carbon atoms, alkoxy with 1 to 4 carbon atoms and halogen and
[0014] a quinone selected from the group consisting of:
[0015] carboxybenzylhaphthaquinone represented by the following structural formula:
4
[0016] tetra (t-butyl) diphenoquinone represented by the following structural formula:
5
[0017] mixtures thereof, and
[0018] a film forming binder.
[0019] The appropriate components and processes of the above copending applications may be selected for the invention of the present application in embodiments thereof.