Claims
- 1. A photothermographic element comprising a support having thereon at least one aqueous coatable light-sensitive imaging layer and at least one aqueous coatable light-absorbing layer comprising a benzothiazine arylidene filter dye in bleaching association with an effective amount of a base precursor;wherein the dye has the following structure: wherein R and R1 independently represents hydrogen, an aryl group containing 6 to 14 carbon atoms, or an alkyl group containing 1 to 12 carbon atoms, which groups may be substituted; R2 groups are substituents that do not interfere with the activity of the dye; the subscript “n” can range from 1 to 4; and D is a moiety, in conjugation with the carbonyl and the sulfone groups, represented by the following formulae: wherein the group R15 represents hydrogen, carboxy, carboxyalkyl, sulfonamido, sulfamoyl, or an alkyl, arylalkyl, cyloalkyl, alkoxy, alkylamino, or alkylthio group; the groups R13 and R14 each individually represent an alkyl group or an alkenyl group or an aryl, arylalkyl, heterocyclic or cycloalkyl group, or alternatively, R13 and R14 together represent the non-metallic atoms required to form a substituted or unsubstituted 5- or 6-membered ring with each other, or R13 and R14 individually represent the non-metallic atoms necessary to form a substituted or unsubstituted 5- or 6-membered fused ring with the phenyl ring to which the nitrogen is attached; and the subscript r is 0, 1, 2, 3 or 4.
- 2. The photothermographic element of claim 1 wherein the R2 groups each individually represents an alkyl group of 1 to 20 carbon atoms, an alkenyl group of 2 to 20 carbon atoms, or an aryl, aralkyl, heterocyclic or cycloalkyl group of 5 to 14 carbon atoms, or a hydroxy, alkoxy, carboxy, alkoxycarbonyl, amido, cyano, halogen, or nitro, for replacement of a hydrogen, which groups may be substituted.
- 3. The photographic element of claim 1 wherein the dye is a benzothiazine-dioxide arylidene compound derived from a 3,4-dihydro-1H-2,1-benzothiazin-4-oxo-2,2-dioxide nucleus.
- 4. The photothermographic element of claim 1 wherein the base precursor reacts with the dye at a temperature suitable for photothermographic development or below but higher than 80° C.
- 5. The photothermographic element of claim 1 wherein the base precursor is a neutral or weakly basic compound which can generate a strong base during thermal processing.
- 6. The photothermographic element of claim 1 wherein the base precursor is a bisguanidine base precursor.
- 7. The photothermographic element of claim 1 wherein the base precursor is an arylsulfonylacetic acid salt of a guanidine base.
- 8. The photothermographic element of claim 1 wherein the base precursor is a bisguanidinium salt of an arylsulfonylacetic acid having the following formula: wherein n is 2, 3 or 4; the groups R14 and R15 are independently a hydrogen or a substituted or unsubstituted alkyl or aryl group; and the group R16 represents an aryl, alkoxy, or —SO2R17, wherein R17 is a substituted or unsubstituted aryl or alkyl group or an imide group.
- 9. The photothermographic element of claim 1 wherein said filter dye becomes at least about 50% colorless within about 5 minutes upon heating to a temperature of at least about 90° C.
- 10. A photothermographic element according to claim 1 wherein the imaging layer comprises a blocked developer, a light-sensitive silver halide emulsion, and a non-light sensitive silver salt oxidizing agent.
- 11. A photothermographic element according to claim 1 that is capable of dry development without the application of aqueous solutions.
- 12. A photothermographic element according to claim 1 comprising a mixture of at least two organic silver salts, at least one of which is a non-light sensitive silver salt oxidizing agent.
- 13. The photothermographic element of claim 1 wherein said light-sensitive imaging layer and said light-absorbing layer comprise an aqueous composition comprising a hydrophilic binder.
- 14. The photothermographic element of claim 13 wherein the hydrophilic binder is a polymer is selected from the group consisting of gelatin, poly(vinyl alcohol), poly(vinyl pyrrolidone), poly(amides), and derivatives thereof.
- 15. The photothermographic element of claim 1 wherein the dye is in the form of particles having an average diameter of 0.01 to 5 microns.
- 16. A color photothermographic element comprising (a) a support, having thereon (b) at least three aqueous-coatable light-sensitive imaging layers which have their individual sensitivities in different wavelength regions and (c) an aqueous-coatable filter layer, below the imaging layers, comprising (i) at least one arylidiene antihalation filter dye according to claim 1, which filter dye in association with an effective amount of a base precursor becomes at least about 50% colorless within about 5 minutes upon heating to a temperature of at least about 90° C.
- 17. The color photothermographic element of claim 16, wherein the imaging layers further comprise a non-light-sensitive organic, silver salt oxidizing agent, further in combination with an incorporated developing agent or precursor thereof.
- 18. A photothermographic process for preparing visible photographic images comprising the steps of:(a) providing a photothermographic element comprising a support having coated thereon (i) at least one aqueous-coatable layer containing photosensitive silver halide, a water-insoluble organic silver salt as an oxidizing agent, a reducing agent for silver ion, and (ii) an aqueous-coatable light-absorbing layer comprising a arylidiene filter dye according to claim 1, which dye is in association with an effective amount of a base precursor; (b) imagewise exposing the photothermographic element; and (c) thermally developing the film without any externally applied developing agent, comprising heating said film to an average temperature of at least 90° C. for at least 0.5 seconds, wherein said antihalation dye becomes at least about 50% colorless.
- 19. The photothermographic process according to claim 18 wherein thermal development is conducted under substantially dry process conditions without the application of aqueous solutions.
- 20. The photothermographic process of claim 19 wherein said filter layer becomes substantially colorless within 2 minutes upon heating to a temperature of at least 90° C.
- 21. The photothermographic process according to claim 19, wherein said development step comprises treating said imagewise exposed element at a temperature between about 100° C. and about 180° C. for a time ranging from about 0.5 to about 60 seconds.
- 22. The photothermographic process according to claim 18 further comprising the step of scanning the imagewise exposed and developed imaging element to form a first electronic image representation of said imagewise exposure.
RELATED APPLICATIONS
Novel benzothiazine dyes for imaging elements are disclosed in copending commonly assigned Ser. No. 10/071,314, hereby incorporated by reference in their entirety.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
5312721 |
Gesing |
May 1994 |
A |
5395747 |
Helland et al. |
Mar 1995 |
A |
6558888 |
Helber et al. |
May 2003 |
B1 |
Foreign Referenced Citations (1)
Number |
Date |
Country |
708086 |
May 1998 |
EP |