Use of aromatic-aliphatic ketones as photo sensitizers |
| What is claimed is: 1. In a method for the photopolymerisation of unsaturated compounds employing a ... |
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Function separated type electrophotographic light-sensitive members and process for production thereof |
| In order to solve the above described problems, this invention is intended to reduce the thickness ... |
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Derivatives of aryl ketones as visible sensitizers of photopolymerizable compositions |
| I claim: 1. A photopolymerizable composition comprising the components: (i) at least one nongaseous ... |
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Photosensitive members and a process for forming patterns using the same |
| OF THE INVENTION The o-quinonediazide compound used in the present invention must have at least ... |
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Heat developable photosensitive material |
| OF THE INVENTION As is described above, the antihalation layer of the present invention is ... |
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Light sensitive, thermally developable imaging system |
| OF THE INVENTION There are a minimum of four components to the imageable systems of the present ... |
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Decolorizable imaging system |
| OF THE INVENTION There are a minimum of four components to the present invention. The four ... |
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Polyvinyl butyral ink formulation |
| OFTHE INVENTION The polyvinyl butyral used in the present invention is prepared by the usual ... |
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Method of stabilizing organic substrate materials including photographic dye images to light and a photographic material so stabilized
| Details |
Inventors: Hara, Hiroshi; Nakamura, Kotaro; Suzuki, Yoshiaki;
Assignee: Fuji Photo Film Co., Ltd. (Minami-ashigara, JP)
Primary Examiner: Schilling; Richard L.
Assistant Examiner:
Attorney, Agent or Firm: Sughrue, Rothwell, Mion, Zinn and Macpeak
A method of stabilizing organic substrate materials having an absorption maximum in the wavelength region of about 300 nm to about 800 nm to light which comprises making coexist with the organic substrate at least one metal complex salt represented by the following general formula (I): ##STR1## wherein Cat represents a divalent or a monovalent cation, and n is 1 or 2. A photographic material thus stabilized is also disclosed. |
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DETAILED DESCRIPTION OF THE INVENTION The above-described objects and other objects of the present invention are attained by making coexist with the organic substrate material having an absorption maximum in the wavelength region of about 300 nm to about 800 nm at least one metal complex salt represented by the following general formula (I): ##STR2## wherein Cat represents one divalent cation or two monovalent cations, and n is 1 when Cat is a monovalent cation and 2 when Cat is a divalent cation. The terms "in the presence of" or "coexistant with" as used in the specification refer not only to co-existence of the substrate material and the compound of the formula (I) in the same solution, dispersion, emulsion or layer but also to the existence of the organic substrate and the complex in, for example, adjacent layers of a multi-layered photographic material. As long as the complex compound is associated with the organic substrate material such that it improves the light fastness of the organic substrate, it is used "in the presence of" or "coexists" with the substrate for purposes of the present invention. The divalent inorganic cations represented by Cat in the formula (I) include alkaline earth metals such as Mg. sup. ++, Ca. sup. ++, Sr. sup. ++, Ba. sup. ++ or the like. The divalent organic cations represented by Cat in the general formula (I) include bisonium ions (e. g. , a bisammonium ion, a bisphosphonium ion or the like) and so on. The monovalent inorganic cations represented by Cat in the general formula (I) include alkali metals (e. g. , Li. sup. +, Na. sup. +, K. sup. + or the like) and NH. sub. 4. sup. +. The monovalent organic cations represented by Cat in the general formula (I) include onium ions (e. g. , a quaternary ammonium ion, a quaternary phosphonium ion, a tertiary sulfonium ion or the like) and so on. Preferred examples of the above-described onium ions include those which are represented by the following general formulae, (IIa), (IIb), (IIc), (IId) and (IIe): ##STR3## wherein R. sup. 1 to R
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