Claims
- 1. An organophotoreceptor comprising:
(a) a charge transport material having the formula 12where R1, R2, R3, and R4 comprise, each independently, an alkyl group, an alkenyl group, an aromatic group, a heterocyclic group, or a part of a ring group; X and X′ comprise, each independently, an aromatic group; Y and Y′ comprise, each independently, a (disubstituted)methylene group; and Z is a linking group; (b) a charge generating compound; and (c) an electrically conductive substrate on which said charge transport material and said charge generating compound are located.
- 2. The organophotoreceptor of claim 1 further comprising a second charge transport material.
- 3. The organophotoreceptor of claim 2 wherein the second charge transport material comprises a charge transport compound.
- 4. The organophotoreceptor of claim 1 wherein X and X′ are, each independently, a C6H3 group.
- 5. The organophotoreceptor of claim 1 wherein the (disubstituted)methylene group is selected form the group consisting of a 10H-anthracen-9-ylidene group, a 9-fluorenylidene group, and a diarylmethylene group.
- 6. The organophotoreceptor of claim 1 wherein the (disubstituted)methylene group is a (di-aromatic)methylene group.
- 7. The organophotoreceptor of claim 1 comprising:
(a) a charge transport layer comprising said charge transport material and a polymeric binder; and (b) a charge generating layer comprising said charge generating compound and a polymeric binder.
- 8. The organophotoreceptor of claim 1 wherein Z has the formula —(CH2)m— where m is an integer between 1 and 20, inclusive, and one or more of the methylene groups is optionally replaced by O, S, N, C, B, P, C═O, O═S═O, a heterocyclic group, an aromatic group, urethane, urea, an ester group, an NR6 group, a CR7, or a CR8R9 group where R6, R7, R8, and R9 are, independently, a bond, H, hydroxyl, thiol, carboxyl, an amino group, an alkyl group, an alkenyl group, a heterocyclic group, an aromatic group, or part of a ring group.
- 9. An electrophotographic imaging apparatus comprising:
(a) a light imaging component; and (b) an organophotoreceptor oriented to receive light from said light imaging component, said organophotoreceptor comprising:
(i) a charge transport material having the formula 13where R1, R2, R3, and R4 comprise, each independently, an alkyl group, an alkenyl group, an aromatic group, a heterocyclic group, or a part of a ring group; X and X′ comprise, each independently, an aromatic group; Y and Y′ comprise, each independently, a (disubstituted)methylene group; and Z is a linking group;
(ii) a charge generating compound; and (iii) an electrically conductive substrate on which said charge transport material and said charge generating compound are located.
- 10. The electrophotographic imaging apparatus of claim 9 further comprising a toner dispenser.
- 11. The electrophotographic imaging apparatus of claim 9 wherein the organophotoreceptor further comprises a second charge transport material.
- 12. The electrophotographic imaging apparatus of claim 11 wherein said second charge transport material comprises a charge transport compound.
- 13. The electrophotographic imaging apparatus of claim 9 wherein the (disubstituted)methylene group is selected form the group consisting of a 10H-anthracen-9-ylidene group, a 9-fluorenylidene group, and a diarylmethylene group.
- 14. The electrophotographic imaging apparatus of claim 9 wherein the (disubstituted)methylene group is a (di-aromatic)methylene group.
- 15. The electrophotographic imaging apparatus of claim 9 wherein said organophotoreceptor comprises a belt or a drum that supports the electrically conductive substrate.
- 16. The electrophotographic imaging apparatus of claim 9 wherein X and X′ are, each independently, a C6H3 group.
- 17. The electrophotographic imaging apparatus of claim 9 wherein Z has the formula —(CH2)m— where m is an integer between 1 and 20, inclusive, and one or more of the methylene groups is optionally replaced by O, S, N, C, B, P, C═O, O═S═O, a heterocyclic group, an aromatic group, urethane, urea, an ester group, an NR6 group, a CR7, or a CR8R9 group where R6, R7, R8, and R9 are, independently, a bond, H, hydroxyl, thiol, carboxyl, an amino group, an alkyl group, an alkenyl group, a heterocyclic group, an aromatic group, or part of a ring group.
- 18. An electrophotographic imaging process comprising:
(a) applying an electrical charge to a surface of an organophotoreceptor comprising:
(i) a charge transport material having the formula 14where R1, R2, R3, and R4 comprise, each independently, an alkyl group, an alkenyl group, an aromatic group, a heterocyclic group, or a part of a ring group; X and X′ comprise, each independently, an aromatic group; Y and Y′ comprise, each independently, a (disubstituted)methylene group; and Z is a linking group;
(ii) a charge generating compound; and (iii) an electrically conductive substrate over which said charge transport material and said charge generating compound are located; (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.
- 19. The electrophotographic imaging process of claim 18 wherein said organophotoreceptor further comprises a second charge transport material.
- 20. The electrophotographic imaging process of claim 18 wherein Z has the formula —(CH2)m— where m is an integer between 1 and 20, inclusive, and one or more of the methylene groups is optionally replaced by O, S, N, C, B, P, C═O, O═S═O, a heterocyclic group, an aromatic group, urethane, urea, an ester group, an NR6 group, a CR7, or a CR8R9 group where R6, R7, R8, and R9 are, independently, a bond, H, hydroxyl, thiol, carboxyl, an amino group, an alkyl group, an alkenyl group, a heterocyclic group, an aromatic group, or part of a ring group.
- 21. The electrophotographic imaging process of claim 18 wherein said toner comprises colorant particles.
- 22. A charge transport material having the formula
- 23. The charge transport material of claim 22 wherein X and X′ are, each independently, a C6H3 group.
- 24. The charge transport material of claim 22 wherein the (disubstituted)methylene group is selected form the group consisting of a 10H-anthracen-9-ylidene group, a 9-fluorenylidene group, and a diarylmethylene group.
- 25. The charge transport material of claim 22 wherein Z has the formula —(CH2)m— where m is an integer between 1 and 20, inclusive, and one or more of the methylene groups is optionally replaced by O, S, N, C, B, P, C═O, O═S═O, a heterocyclic group, an aromatic group, urethane, urea, an ester group, an NR6 group, a CR7, or a CR8R9 group where R6, R7, R8, and R9 are, independently, a bond, H, hydroxyl, thiol, carboxyl, an amino group, an alkyl group, an alkenyl group, a heterocyclic group, an aromatic group, or part of a ring group.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims priority to copending U.S. Provisional Patent Application Ser. No. 60/483,726 to Tokarski et al., entitled “Azine-Based Dimeric Charge Transport Materials,” incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60483726 |
Jun 2003 |
US |