Claims
- 1. An organophotoreceptor comprising:
(a) a fluoran compound having a central nucleus of the formula, 9(b) a polymer binder in which the fluoran compound is bound; (c) a charge generating compound; and (d) an electrically conductive substrate having a surface on which the fluoran compound, the polymer binder and charge generating compound are located.
- 2. An organophotoreceptor according to claim 1 wherein said organophotoreceptor is in the form of a drum.
- 3. An organophotoreceptor according to claim 1 wherein said fluoran compound has a formula,
- 4. An organophotoreceptor according to claim 3 wherein R1, R2, R3, and R4 are, independently, —NR9R10, —OR11, or hydrogen, and R5, R6, R7, and R8 are, independently, alkyl, aryl, or hydrogen, where R9, R10, and R11, are, independently, hydrogen, alkyl or aryl group.
- 5. An organophotoreceptor according to claim 1 wherein the charge generating compound is within the polymer binder and wherein the fluoran compound, the charge generating compound and the binder form a photoconductive layer on the surface of the substrate.
- 6. An organophotoreceptor according to claim 5 further comprising an undercoating layer comprising a polymer between the photoconductive layer and the substrate.
- 7. An organophotoconductor according to claim 5 further comprising an overcoat layer.
- 8. An organophotoreceptor according to claim 5 further comprising a charge transport compound.
- 9. An organophotoconductor according to claim 1 wherein the fluoran compound and the charge generating compound are in different layers.
- 10. An organophotoconductor according to claim 9 wherein the charge generating compound is between the substrate and the fluoran compound.
- 11. An organophotoreceptor according to claim 1 further comprising a UV stabilizer that is within a layer with the fluoran compound.
- 12. An organophotoreceptor according to claim 1 further comprising a charge transport compound.
- 13. An electrophotographic imaging apparatus comprising:
(a) a light imaging component; and (b) an organophotoreceptor oriented to receive light from the light imaging component, the organophotoreceptor comprising
(i) a fluoran compound having a central nucleus of the formula; 11(ii) a polymer binder in which the fluoran compound is bound; (iii) a charge generating compound; and (iv) an electrically conductive substrate having a surface on which the fluoran compound, the polymer binder and charge generating compound are located.
- 14. An electrophotographic imaging apparatus according to claim 13 wherein said fluoran compound has the formula
- 15. An electrophotographic imaging apparatus according to claim 14 wherein R1, R2, R3, and R4 are, independently, —NR9R10, OR11, or hydrogen, and R5, R6, R7, and R8 are, independently, alkyl, aryl, or hydrogen, where R9, R10, and R11, are, independently, hydrogen, alkyl or aryl group.
- 16. An electrophotographic imaging apparatus according to claim 13 wherein the charge generating compound is within the polymer binder and wherein the fluoran compound, the charge generating compound and the binder form a photoconductive layer on the surface of the substrate.
- 17. An electrophotographic imaging apparatus according to claim 16 further comprising an overcoat layer.
- 18. An electrophotographic imaging apparatus according to claim 13 further comprising a UV stabilizer wherein the fluoran compound and the UV stabilizer are within a layer.
- 19. An electrophotographic imaging process comprising:
(a) applying an electrical charge to a surface of an organophotoreceptor comprising:
(i) a fluoran compound having a central nucleus of the formula; 13(ii) a polymer binder in which the fluoran compound is bound; (iii) a charge generating compound; and (iv) an electrically conductive substrate having a surface on which the fluoran compound, the polymer binder and 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.
- 20. An electrophotographic imaging process according to claim 19 wherein said fluoran compound has a formula
- 21. An electrophotographic imaging process according to claim 20 wherein R1, R2, R3, and R4 are, independently, —NR9R10, —OR11, or hydrogen, and R5, R6, R7, and R8 are, independently, alkyl, aryl, or hydrogen, where R9, R10, and R11, are, independently, hydrogen, alkyl or aryl group.
- 22. An electrophotographic imaging process according to claim 19 wherein the toner comprises a liquid toner comprising a dispersion of colorant particles in an organic liquid.
- 23. An electrophotographic imaging process according to claim 19 wherein said organophotoreceptor further comprises an overcoat layer.
- 24. An electrophotographic imaging process according to claim 19 wherein the organophotoreceptor further comprises a light stabilizer within a layer along with the fluoran compound.
CROSS REFERNCE TO RELATED APPLICATIONS
[0001] This application claims priority to copending U.S. Provisional Application serial No. 60/407,029 filed on Aug. 30, 2002 to Jubran et al., entitled “Electrophotographic Organophotoreceptors With Novel Electron Transport Compounds,” incorporated herein by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60407029 |
Aug 2002 |
US |