Claims
- 1. A diffusion transfer film unit comprising: a photosensitive element comprising at least a photosensitive silver halide emulsion layer having associated therewith a dye developer; a dyeable receiving layer adapted to receive an imagewise distribution of diffusible dye developer image-providing material; means for retaining a diffusion transfer processing composition integrated with the film unit; and within said film unit an N-oxide having a polarographic reduction potential less positive than the polarographic oxidation potential of said dye developer and conforming to the formula ##STR12## where each R can be hydrogen or methyl or one of said R groups can be: ##STR13## wherein R.sup.1 is methyl and n is zero or an integer of from 1 to 4.
- 2. A diffusion transfer film unit of claim 1 wherein each of said R groups of said N-oxide is hydrogen.
- 3. A diffusion transfer film unit of claim 1 wherein one of said R groups of said N-oxide is methyl and each of the remaining said R groups is hydrogen.
- 4. A diffusion transfer film unit of claim 1 wherein said N-oxide conforms to the formula ##STR14## where R.sup.2 or R.sup.3 can be hydrogen or methyl or R.sup.2 can be: ##STR15##
- 5. A diffusion transfer film unit of claim 1 wherein the N-oxide is chosen from the group consisting of: ##STR16## or mixtures of these
- 6. A diffusion transfer film unit of claim 1 wherein said N-oxide is present in said diffusion transfer film unit in a layer permeable to said processing composition.
- 7. A diffusion transfer film unit of claim 6 wherein the layer containing said N-oxide comprises gelatin.
- 8. A diffusion transfer film unit of claim 6 wherein the amount of N-oxide contained in said layer is sufficient to provide a coverage of N-oxide between about 20 to about 150 mgs./ft.sup.2.
- 9. A diffusion transfer film unit of claim 1 wherein said dyeable receiving layer is adapted to be superposed over said photosensitive element after photoexposure and is adapted to separation from the photoexposed photosensitive element after processing.
- 10. A diffusion transfer film unit of claim 9 wherein said dyeable receiving layer is supported by an opaque support and said dye developer image-providing material can be viewed in the dyeable layer by reflected light after separation.
- 11. A diffusion transfer film unit of claim 9 wherein said dyeable receiving layer is supported by a transparent support and said dye developer image-providing material can be viewed as a transparency after separation.
- 12. A diffusion transfer film unit of claim 1 wherein said N-oxide is present in said processing composition.
- 13. A diffusion transfer film unit of claim 12 wherein each of said R groups of said N-oxide present in said processing composition is hydrogen.
- 14. A diffusion transfer film unit of claim 12 wherein one of said R groups of said N-oxide present in said processing composition is methyl and each of the remaining said R groups is hydrogen.
- 15. A diffusion transfer film unit comprising as essential elements, a support, a photosensitive system which comprises a silver halide emulsion layer associated with a dye developer, a diffusion transfer processing composition permeable layer containing an N-oxide having a polarographic reduction potential less positive than the polarographic oxidation potential of said dye developer and conforming to the formula: ##STR17## where R.sup.2 or R.sup.3 can be hydrogen or methyl or R.sup.2 can be: ##STR18## and, a dyeable receiving layer adapted to receive diffusible dye developer after photoexposure and processing of the photosensitive system.
- 16. A film unit of claim 15 where the layer containing the N-oxide comprises gelatin.
- 17. A film unit of claim 15 where the amount of N-oxide contained in the layer is sufficient to provide a coverage of N-oxide between about 20 to about 150 mgms. of N-oxide/ft.sup.2.
- 18. A film unit of claim 15 where the N-oxide is chosen from the group consisting of: ##STR19## or mixtures of these.
- 19. A diffusion transfer film unit comprising a support; a photosensitive system comprising a silver halide emulsion layer associated with a dye developer; a diffusion transfer processing composition permeable layer containing an N-oxide having a polarographic reduction potential less positive than the polarographic oxidation potential of said dye developer and conforming to the formula: ##STR20## where R.sup.2 or R.sup.3 can be hydrogen or methyl or R.sup.2 can be: ##STR21## a dyeable receiving layer adapted to receive diffusible dye developer after photoexposure of the photosensitive system and the application of a diffusion transfer processing composition to the photoexposed photosensitive system and, means for retaining a diffusion transfer processing composition and integrated with the film unit for discharge of its contents within the film unit for processing the photoexposed system.
- 20. A film unit of claim 19 where the dyeable receiving layer is adapted to be superposed over the photosensitive system after photoexposure and adapted for separation from the photoexposed photosensitive system after processing so that the dye developer transfer image can be viewed in the dyeable layer after separation.
- 21. A film unit of claim 19 where the dyeable receiving layer is adapted for viewing the dye developer transfer image in the dyeable layer without separation of the dyeable layer from the developed photosensitive system.
- 22. A film unit of claim 19 where the layer containing the N-oxide comprises gelatin.
- 23. A film unit of claim 19 where the layer containing the N-oxide contains an amount of N-oxide sufficient to provide a coverage between about 20 to about 150 mgms. of N-oxide/ft.sup.2.
- 24. A film unit of claim 19 where the N-oxide is chosen from the group consisting of: ##STR22## or mixtures of these
- 25. A film unit which comprises a photosensitive element which includes the following in order: an opaque support; at least one silver halide emulsion layer associated with a dye developer and a diffusion transfer processing composition permeable layer containing an N-oxide having a polarographic reduction potential less positive than the polarographic oxidation potential of said dye developer and conforming to the following formula: ##STR23## where R.sup.2 or R.sup.3 can be hydrogen or methyl or R.sup.2 can be: ##STR24## an image-receiving element adapted to be superposed on the photosensitive element after photoexposure and which includes the following in order: a dyeable layer and an opaque support and means for retaining a diffusion transfer processing composition adapted for discharge of its contents between the dyeable layer and the layer containing the N-oxide.
- 26. A film unit which comprises the following, in order: a transparent support, a layer containing an N-oxide, at least one silver halide emulsion layer associated with a dye developer, an opaque layer, a light reflective layer, a dyeable layer and means for retaining an opaque
- processing composition adapted for discharge of its contents between the transparent support and the N-oxide containing layer and wherein said N-oxide has a polarographic reduction potential less positive than the polarographic oxidation potential of said dye developer and conforms to the following formula: ##STR25## where each R.sup.2 and R.sup.3 can be hydrogen, or methyl or R.sup.2 can be: ##STR26##
- 27. A film unit which comprises a photosensitive element which includes the following, in order: an opaque support, at least one silver halide layer associated with a dye developer, a layer containing an N-oxide having a polarographic reduction potential less positive than the polarograph oxidation potential of said dye developer and conforming to the following formula: ##STR27## where each R.sup.2 and R.sup.3 can be hydrogen or methyl or R.sup.2 can be: ##STR28## and an image-receiving element which includes the following in order: a dyeable layer and a transparent support and, means for retaining an opaque processing composition which includes a reflective pigment and which is adapted for discharge of its contents between the dyeable layer and the N-oxide containing layer.
- 28. A photosensitive element which comprises a support layer, at least one silver halide emulsion layer associated with a dye developer and an N-oxide which is substantially soluble in aqueous alkaline processing compositions integrated with a processing composition permeable layer of the element, said N-oxide having a polarographic reduction potential less positive than the polarographic oxidation potential of said dye developer and conforming to the following formula: ##STR29## where each R can be hydrogen or methyl or one of said R groups can be: ##STR30## where R.sup.1 is methyl and n is zero or an integer of from 1 to 4.
- 29. A diffusion transfer film unit of claim 28 wherein each of said R groups of said N-oxide is hydrogen.
- 30. A diffusion transfer film unit of claim 28 wherein one of said R groups of said N-oxide is methyl and each of the remaining of said R groups is hydrogen.
- 31. A photosensitive element for a diffusion transfer film unit which comprises a support layer, at least one silver halide emulsion layer associated with a dye developer and an N-oxide which is substantially soluble in aqueous alkaline processing compositions integrated with a processing composition permeable layer of the element, said N-oxide having a polarographic reduction potential less positive than the polarographic oxidation potential of said dye developer and conforming to the following formula: ##STR31## where each R.sup.2 and R.sup.3 can be hydrogen or methyl or R.sup.2 can be: ##STR32##
- 32. An element of claim 31 where the N-oxide is dispersed in a layer comprising gelatin.
- 33. An element of claim 31 where the N-oxide is dispersed in the layer in an amount sufficient to provide a coverage between about 20 to about 200 mgms. of N-oxide/ft.sup.2.
- 34. An element of claim 31 where the n-oxide is chosen from the group consisting of: ##STR33## or mixtures of these.
- 35. A diffusion transfer process which comprises the steps of:
- (a) photoexposing a photosensitive element which includes at least one silver halide emulsion layer associated with a dye developer;
- (b) contacting the photoexposed element with a processing composition so that said photoexposed silver halide emulsion layer and associated dye developer can be processed in the presence of an N-oxide substantially soluble in said processing composition, said N-oxide having a polarographic reduction potential less positive than the polarographic oxidation potential of said dye developer(s) and conforming to the following formula: ##STR34## where each R can be hydrogen or methyl or one of said R groups can be: ##STR35## wherein R.sup.1 is methyl and n is zero or an integer of from 1 to 4; and (c) developing said photoexposed silver halide layer to provide, as a function of said development, an imagewise distribution of dye image providing material which is transferred by diffusion to an image receiving layer.
- 36. A diffusion transfer process of claim 35 wherein each of said R groups of said N-oxide is hydrogen.
- 37. A diffusion transfer process of claim 35 wherein one of said R groups of said N-oxide is methyl and each of the remaining of said R groups is hydrogen.
- 38. A diffusion transfer process of claim 35 wherein said N-oxide is present in said diffusion transfer film unit in a layer permeable to said processing composition.
- 39. A diffusion transfer process of claim 35 wherein said N-oxide is present in said processing composition.
- 40. A diffusion transfer process of claim 39 wherein each of said R groups of said N-oxide present in said processing composition is hydrogen.
- 41. A diffusion transfer process of claim 39 wherein one of said R groups of said N-oxide present in said processing composition is methyl and each of the remaining said R groups is hydrogen.
- 42. A diffusion transfer process which comprises the steps of:
- (a) photoexposing a photosensitive element which includes at least one silver halide emulsion layer associated with a dye developer and having an N-oxide which is substantially soluble in an aqueous alkaline processing composition integrated with a processing composition permeable layer of the element and where said N-oxide has a polarographic reduction potential less positive than the polarographic oxidation potential of said dye developer(s) and said N-oxide conforms to the following formula: ##STR36## where each R.sup.2 and R.sup.3 can be hydrogen or methyl or R.sup.2 can be: ##STR37## (b) contacting the photoexposed element with an aqueous alkaline processing composition so that said photoexposed silver halide emulsion layer and associated dye developer can be processed in the presence of the N-oxide; and
- (c) developing said photoexposed silver halide layer to provide, as a function of said development, an imagewise distribution of dye image providing material which is transferred by diffusion to an image receiving layer.
- 43. A process of claim 42 where the N-oxide is dispersed in a layer comprising gelatin.
- 44. A process of claim 42 where the N-oxide is dispersed in said layer in an amount sufficient to provide a coverage between about 20 to about 150 mgms. of N-oxide/ft..sup.2
- 45. A process of claim 42 where the N-oxide is chosen from the group consisting of: ##STR38## or mixtures of these.
CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of our earlier filed and copending application Serial No. 811,083, filed June 29, 1977, now abandoned.
US Referenced Citations (6)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
811083 |
Jun 1977 |
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