Claims
- 1. A photographic print element comprised of a reflective support and, coated on the support, at least one image recording emulsion layer unit,
- WHEREIN the emulsion layer unit contains an emulsion which is a blend of
- (a) radiation-sensitive silver iodochloride grains that
- (1) are comprised of three pairs of equidistantly spaced parallel {100} crystal faces and
- (2) contain from 0.05 to 3 mole percent iodide, based on total silver, in a controlled, non-uniform iodide distribution forming a core containing at least 50 percent of total silver, an iodide-free surface shell having a thickness of greater than 25 .ANG., and a sub-surface shell that contains a maximum iodide concentration and
- (b) minimum density reducing silver halide grains that
- (1) consist essentially of at least one of the halides chloride and bromide and
- (2) are present in a molar concentration at least equal to that of the silver iodide in the silver iodochloride grains.
- 2. A photographic print element according to claim 1 wherein the grain size coefficient of variation of the silver iodochloride grains is less than 35 percent.
- 3. A photographic print element according to claim 2 wherein the surface shell has as thickness of greater than 50 .ANG..
- 4. A photographic print element according to claim 1 wherein the silver iodochloride grains contain from 0.1 to 1.0 mole percent iodide, based on total silver.
- 5. A photographic print element according to claim 1 wherein the core contains at least 85 percent of total silver.
- 6. A photographic print element according to claim 1 wherein iodide forming the grains is excluded from the core of the grains.
- 7. A photographic print element according to claim 6 wherein the core accounts for at least 85 percent of total silver forming the grains.
- 8. A photographic print element according to claim 1 wherein the emulsion, when exposed to 390 nm electromagnetic radiation at 10.degree. K., exhibits stimulated fluorescent emissions in the range of from 450 to 470 nm and at 500 nm, the stimulated fluorescent emission in the range of from 450 to 470 nm having a peak intensity more than twice the stimulated fluorescent emission intensity at 500 nm.
- 9. A photographic print element according to claim 1 wherein the silver iodochloride grains include tetradecahedral grains having {111} and {100} crystal faces.
- 10. A photographic print element according to claim 1 wherein the silver iodochloride grains contain a sensitivity enhancing dopant.
- 11. A photographic print element according to claim 1 wherein the silver iodochloride grains contain a contrast increasing dopant.
- 12. A photographic print element according to claim 1 wherein the silver iodochloride grains contain a reciprocity improving iridium dopant.
- 13. A photographic print element according to claim 1 wherein the minimum density reducing silver halide grains are present in a concentration of from 3 to 25 percent, based on total silver in the emulsion.
- 14. A photographic print element according to claim 13 wherein the minimum density reducing silver halide grains are present in a concentration of from 5 to 15 percent, based on total silver present in the emulsion.
- 15. A photographic print element according to claim 1 wherein the minimum density reducing silver halide grains exhibit a mean grain size of less than 0.1 .mu.m.
- 16. A photographic print element according to claim 1 wherein the emulsion layer unit contains a dye image forming coupler.
- 17. A photographic print element according to claim 16 wherein a blue sensitive yellow dye image forming layer unit, a green sensitive magenta dye image forming layer unit, and a red sensitive cyan dye image forming layer unit are coated on the reflective support and the emulsion containing the silver iodochloride containing grains is present in at least one of the dye image forming layer units.
Parent Case Info
This is a continuation-in-part of applicants' patent application, U.S. Ser. No. 08/362,109, filed Dec. 22, 1994, now abandoned.
US Referenced Citations (21)
Foreign Referenced Citations (1)
Number |
Date |
Country |
0 190 625 |
Aug 1986 |
EPX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
362109 |
Dec 1994 |
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