Claims
- 1. A curable coating composition comprising:
- (i) a blocked isocyanate;
- (ii) a functional component containing at least one active hydrogen and reactive with said blocked polyisocyanate; and
- (iii) a polystannoxane catalyst for the reaction of said blocked polyisocyanate with said functional component, of the formula: ##STR11## wherein each R is the same or different, and independently selected from an alkyl group having 1 to 20 carbon atoms, and an aromatic group; each X is the same or different and independently selected from halogen, hydroxyl, alkoxy, carbonate, phosphate, phosphinate, isocyanate, sulfonate, carboxylic, acyloxy, a mono organotin group of the formula: ##STR12## in which R.sup.3 is selected from among the same group as R, or a tri organotin group of the formula (R.sup.2).sub.3 SnO-- in which each R.sup.2 is selected from among the same group as R; each R.sub.1 is the same or different and selected from among the same groups as R or X; n is an integer from 1 to 20, m is an integer from zero to 19, and the sum of n plus m is an integer from 3 to 20.
- 2. The curable composition of claim 1 wherein said R is independently selected from the group consisting of methyl, ethyl, propyl, butyl, isopropyl, amyl, hexyl, heptyl, lauryl, octyl, phenyl, tolyl, nylyl and benzyl, and the sum of n plus m is 3 to 16.
- 3. The curable composition of claim 2 wherein each X is independently selected from the group consisting of --OH, formate, acetate or --OR.sup.4 with R.sup.4 being butyl, octyl, phenyl or benzyl, and the sum of n plus m is 3 to 16.
- 4. The composition of claim 3, wherein said R is independently selected from the group consisting of propyl, butyl, isopropyl, hexyl, heptyl, lauryl, octyl, phenyl, and benzyl.
- 5. The curable composition of claim 4, wherein each R is butyl or octyl, and each X is formyloxy or acetoxy.
- 6. The composition of claim 1, wherein each X is independently selected from the group consisting of halogen, methoxy, ethoxy, propoxy, butoxy, carbonate, phosphate, phosphinate, isocyanate, sulfonate, formyloxy, acetoxy, propionoyloxy, butyroyloxy, hexanolyloxy, lauroyloxy, oleoyloxy, palmitoyloxy, stearoyloxy, benzolyloxy, allylcarbonyloxy, cyanoacetoxy, maleoyloxy, a mono organotin group of the formula: ##STR13## in which R.sup.3 is selected from the group consisting of methyl, ethyl, propyl, butyl, isopropyl, amyl, hexyl, heptyl, lauryl, octyl, phenyl and benzyl, and a tri organotin group of the formula (R.sup.2).sub.3 SnO-- in which each R2 is selected from among the group consisting of methyl, ethyl, propyl, butyl, isopropyl, amyl, hexyl, heptyl, lauryl, octyl, phenyl and benzyl.
- 7. The composition of claim 6 wherein x is independently selected from the group consisting of chlorine, bromine, iodine, methoxy, ethoxy, propoxy, butoxy, carbonate, phosphate, isocyanate, sulfonate, acetoxy, formyloxy, propionoyloxy, and butyroyloxy.
- 8. The composition of claim 2, wherein said blocked isocyanate is a blocked polyisocyanate and said functional component reactive with said blocked polyisocyanate comprises a polyfunctional component containing at least one hydroxyl hydrogen.
- 9. The curable composition of claim 2, wherein said catalyst is a liquid at ambient temperature.
- 10. The composition of claim 2 wherein the polystannoxane catalyst constitutes from 0.02% to 2% of the total weight of the blocked isocyanate and the functional component.
- 11. The composition of claim 10 wherein the polystannoxane catalyst constitutes from 0.1% to 0.5% of the total weight of the blocked isocyanate and the functional component.
- 12. The curable composition of claim 1, further comprising a cocatalyst containing a metallic element selected from the group consisting of manganese, cobalt, nickel, copper, cerium, zirconium, iron, zinc, germanium, antimony, or bismuth.
- 13. The composition of claim 12 wherein the polystannoxane catalyst constitutes from 0.1% to 0.5% of the total weight of the blocked isocyanate and the functional component, each R is butyl, each X is formyloxy or acetoxy, the sum of n plus m is from 3 to 14, the cocatalyst is selected from the group consisting of zinc acetylacetonate, copper acetylacetonate, iron acetylacetonate, nickel acetylacetonate, zirconium acetylacetonate, bismuth acetylacetonate, zinc acetate and zinc lactate, and the ratio by weight of the polystannoxane catalyst to co-catalyst is in the range of 4:1 to 1:4.
- 14. The curable composition of claim 12, wherein said metallic containing cocatalyst is a chelate, oxide or salt of the metallic element.
- 15. The curable composition of claim 14, wherein said metallic containing cocatalyst is a salt.
- 16. The curable composition of claim 15, wherein said metallic salt is a salt of an inorganic acid, a carboxylic acid, or a hydroxy carboxylic acid, or based on an alcohol, glycol or phenol.
- 17. The curable composition of claim 16, wherein said metallic containing cocatalyst is salt of a mono or dicarboxylic acid containing from 1 to about 20 carbon atoms.
- 18. The curable composition of claim 17, wherein said mono or dicarboxylic acid is selected from the group consisting of acetic, acrylic, methacrylic, propionic, butyric, hexanoic, octanoic, decanoic, stearic, oleic, eiconsanoic, benzoic, oxalic, malic, maleic, succinic, sebacic and phthalic acids.
- 19. The curable composition of claim 15, wherein said metallic containing cocatalyst is salt of a hydroxy carboxylic acid containing from 2 to 20 carbon atoms.
- 20. The curable composition of claim 19, wherein said hydroxy carboxylic acid is selected from the group consisting of hydroxy acetic, lactic, citric, tartaric, salicylic, and gluconic acid.
- 21. The curable composition of claim 15, wherein said metallic containing salt is a salt of an inorganic acid selected from the group consisting of carbonic, hydrochloric, hydrobromic, and hydriodic, nitric, sulfuric and phosphoric acid.
- 22. The curable composition of claim 12, wherein said metallic containing cocatalyst is a chelate.
- 23. The curable composition of claim 22, wherein said metallic chelate is selected from the group consisting of zinc acetylacetonate, copper acetylacetonate, iron acetylacetonate, zirconium acetylacetonate, bismuth acetylacetonate, nickel acetylacetonate, zinc acetate, and zinc lactate.
- 24. The curable composition of claim 23, wherein said metallic chelate is a metallic acetylacetonate.
- 25. The curable composition of claim 1, wherein said catalyst is soluble in another component of the curable composition or in a solvent for at least one component of the composition.
- 26. The curable composition of claim 12, wherein said metallic containing cocatalyst is soluble in another component of the curable composition or in a solvent for at least one component of the composition.
- 27. The curable composition of claim 26, wherein said metallic containing cocatalyst is soluble in said functional compound.
- 28. The composition of claim 12 wherein the ratio by weight of the polystannoxane catalyst to co-catalyst is in the range of 10:1 to 1:10.
- 29. The composition of claim 28 wherein the ratio by weight of the polystannoxane catalyst to co-catalyst is in the range of 4:1 to 1:4.
- 30. A process for curing a blocked isocyanate at a temperature below about 180.degree. C. comprising forming a mixture of:
- (I) a blocked isocyanate;
- (ii) a functional component containing at least one active hydrogen and reactive with said blocked isocyanate;
- (iii) a polystannoxane catalyst for the reaction of said blocked isocyanate with said functional component, of the formula: ##STR14## wherein each R is the same or different, and independently selected from the group consisting of methyl, ethyl, propyl, butyl, isopropyl, amyl, hexyl, heptyl, lauryl, octyl groups, phenyl, tolyl, xylyl, and benzyl; each X is the same or different and independently selected from the group consisting of chlorine, bromine, iodine, hydroxyl, methoxy, ethoxy, propoxy, butoxy, carbonate, phosphate, phosphinate, isocyanate, sulfonate, formyloxy, acetoxy, propionoyloxy, butyroyloxy, hexanolyloxy, lauroyloxy, oleoyloxy, palmitoyloxy, stearoyloxy, benzolyloxy, allylcarbonyloxy, cyanoacetoxy, benzyloyloxy alkyl, maleoyloxy, a mono organotin group of the formula: ##STR15## in which R.sup.3 is selected from among the same group as R, and a tri organotin group of the formula (R.sup.2).sub.3 SnO-- in which each R.sup.2 is selected from among the same group as R; each R.sub.1 is the same or different and selected from among the same groups as R or X; n is an integer from 1 to 20, m is an integer from zero to 19, and the sum of n plus m is an integer from 3 to 20; and,
- curing said mixture at a temperature below about 150.degree. C.
- 31. The process of claim 30, wherein said blocked isocyanate is a blocked polyisocyanate and said functional component reactive with said blocked polyisocyanate is a polyol.
- 32. The process of claim 30, wherein said catalyst is liquid at about room temperature.
- 33. A process for coating a substrate comprising:
- (a) contacting said substrate with a curable coating composition comprising:
- (i) a blocked isocyanate;
- (ii) a functional component containing at least one active hydrogen reactive with said blocked reactive component;
- (iii) a catalyst for promoting the reaction of said reactive component with said functional component comprising a polystannoxane of the formula ##STR16## wherein each R is the same or different, and independently selected from the group consisting of methyl, ethyl, propyl, butyl, isopropyl, amyl, hexyl, heptyl, lauryl, octyl groups, phenyl, tolyl, xylyl, and benzyl; each X is the same or different and independently selected from chlorine, bromine, iodine, hydroxyl, methoxy, ethoxy, propoxy, butoxy, carbonate, phosphate, phosphinate, isocyanate, sulfonate, formyloxy, acetoxy, propionoyloxy, butyroyloxy, hexanolyloxy, lauroyloxy, oleoyloxy, palmitoyloxy, stearoyloxy, benzolyloxy, allylcarbonyloxy, cyanoacetoxy, benzyloyloxy alkyl, maleoyloxy, a mono organotin group of the formula: ##STR17## in which R.sup.3 is selected from among the same group as R, and a tri organotin group of the formula (R.sup.2).sub.3 SnO-- in which each R.sup.2 is selected from among the same group as R; each R.sub.1 is the same or different and selected from among the same groups as R or X; n is an integer from 1 to 20, m is an integer from 0 to 19, and the sum of n plus m is an integer from 3 to 20; and,
- curing said coating at a temperature above ambient and below about 180.degree. C.
- 34. An improved process for catalyzing the making of a polyurethane from reactants containing a blocked isocyanate and a catalyst wherein the improvement comprises utilizing as the catalyst for both unblocking the isocyanate and polyurethane formation, a polystannoxane of the formula: ##STR18## wherein each R is the same or different, and independently selected from an alkyl group having 1 to 20 carbon atoms, and an aromatic group; each X is the same or different and independently selected from halogen, hydroxyl, alkoxy, carbonate, phosphate, phosphinate, isocyanate, sulfonate, carboxylic, acyloxy, a mono organotin group of the formula: ##STR19## in which R.sup.3 is selected from among the same group as R, or a tri organotin group of the formula (R.sup.2).sub.3 SnO-- in which each R.sup.2 is selected from among the same group as R; each R.sup.1 is the same or different and selected from among the same groups as R or X; n is an integer from 1 to 20, m is an integer from zero to 19, and the sum of n plus m is an integer from 3 to 20.
CROSS REFERENCE TO COPENDING APPLICATION
This application is a Continuation-in-Part Application of U.S. Provisional patent application Ser. No. 60/018,438 entitled "Catalyst for Low Temperature Cure of Blocked Isocyanates" filed on May 28, 1996.
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