Claims
- 1. An organotin silane comprising a compound of the formula:
- 2. A catalytically active functionalized organotin silane comprising a compound of the formula:
- 3. An organotin silane chemically bonded to a solid metal oxide through an oxygen bridge and capable of catalyzing and esterification or transesterification reaction or a urethane, urea, silicone, or amino forming reaction comprising the reaction product of;
(a) a solid support containing a metal oxide with surface hydroxy groups, and (b) one or more an organotin silanes of the formula 18wherein: each R1 is independently selected from the group consisting of F, Cl, Br, I, OR, R, where R is substituted or unsubstituted C1 to C 18 alkyl, C5 to C12 cycloalkyl, or aryl, provided at least one value of R1 is selected from among F, Cl, Br, I, and OR; each R2 is independently selected from R1, benzyl, vinyl, allyl, hydride, or and OR; where R is alkyl or 19provided at least one value of R2 is F, Cl, Br, I, or OR R3 is (CH2)m, aryl or cycloalkyl, m=0 to 17,n=1 to 18, sum of n plus m=1 to 18 except when R3 is aryl or cycloalkyl then n =at least 2, except, when R3=(CH2)m, the sum of n plus m=2,4,5 or 6, all values of R1 are R with R being aryl or C1 to C12 alkyl, one value of R2 is Cl aryl or hydride; then, all remaining values for R2 cannot be selected from C1 to C12 alkyl, C7 to C18 cycloalkyl or aryl; and except also, when R3 =(CH2)m, the sum of n plus m=4, all values of R1 are Cl, and two values for R2 are Cl then the remaining value for R2 cannot be butyl.
- 4. An organotin silane chemically bonded to a solid metal oxide through an oxygen bridge and capable of catalyzing esterification or transesterification reaction or a urethane, urea, silicone, or amino forming reaction comprising a compound of the formula:
- 5. A catalytically active functionalized organotin silane chemically bonded to a solid metal oxide through an oxygen bridge and capable of catalyzing and esterification or transesterification reaction or a urethane, urea, silicone, or amino forming reactions comprising a compound of the formula:
- 6. A solid heterogeneous catalyst for esterification or transesterification reactions or a urethane, urea, silicone, or amino forming reactions comprising an organotin functionalized silane chemically bonded to a solid metal oxide through an oxygen bridge corresponding to the formula:
- 7. The catalyst of claim 6 wherein R3 is (CH2)m and the sum of n plus m is either 1 or 3 resulting in R3(CH2)n−, being either a methylene or propylene group.
- 8. The catalyst of claim 6 wherein at least one of the labile group values F, Cl, Br, I, or OR for R2 has been replaced with a catalytically active group selected from the group consisting of oxide, hydroxide, sulfide, sulfate, carbonate, phosphate, phosphite, phosphonate, sulfonate, mercapto, a residue of a mercapto acid, mercapto alcohol, or mercaptoesters, and carboxylates substituted or unsubstituted of C1 to about C20.
- 9. The catalyst of claim 7 wherein at least one of the labile group values F, Cl, Br, I, or OR for R2 has been replaced with a catalytically active group selected from the group consisting of oxide, hydroxide, sulfide, sulfate, carbonate, phosphate, phosphite, phosphonate, sulfonate, mercapto, a residue of a mercapto acid, mercapto alcohol, or mercaptoesters, and carboxylates substituted or unsubstituted of C1 to about C20.
- 10. A heterogeneous catalyst for esterification or transesterification reactions or a urethane, urea, silicone, or amino forming reactions comprising the compound of claim 3 wherein at least one of the labile group values F, Cl, Br, I, or OR for R2 has been replaced with a catalytically active group selected from the group consisting of oxide, hydroxide, sulfide, sulfate, carbonate, phosphate, phosphite, phosphonate, sulfonate, mercapto, a residue of a mercapto acid, mercapto alcohol, or mercaptoesters, and carboxylates substituted or unsubstituted of C1, to about C20.
- 11. The composition of claim 3 or 4 wherein said metal oxide support is selected from the group consisting of glass, mica, silica gel, alumina, aluminasiloxane, kaolin, titania, zirconia and chromium oxide.
- 12. An improved catalyzed esterification or transesterification reaction or a urethane, urea, silicone, or amino forming reaction process, wherein the improvement comprises utilizing as the catalyst, the solid heterogeneous organotin silane catalyst of claim 2, 3 or 4.
- 13. An improved catalyzed esterification or transesterification reaction or a urethane, urea, silicone, or forming reaction process involving reactants and forming reaction products that are in a non-solid phase under reaction conditions, wherein the improvement comprises utilizing as the catalyst, the solid heterogeneous organotin silane catalyst of claim 3.
- 14. An improved catalyzed esterification or transesterification reaction or a urethane, urea, silicone, or forming reaction process involving reactants and forming reaction products that are in a non-solid phase under reaction conditions, wherein the improvement comprises utilizing as the catalyst, the solid heterogeneous organotin silane catalyst of claim 4.
- 15. An improved catalyzed esterification or transesterification reaction or a urethane, urea, silicone, or amino forming reaction process, wherein the improvement comprises utilizing as the catalyst, the solid heterogeneous organotin silane catalyst of claim 6.
- 16. An improved catalyzed esterification or transesterification reaction or a urethane, urea, silicone, or amino forming reaction process, wherein the improvement comprises utilizing as the catalyst, the solid heterogeneous organotin silane catalyst of claim 7.
- 17. The improved catalyzed esterification or transesterification reaction or a urethane, urea, silicone, or amino forming reaction process of claim 13, 14, 15 or 16 further comprising separating the products of said reaction from said solid catalyst when the reaction products are in a different phase than the solid catalyst and utilizing said phase separation operation to yield a reaction product containing less than 100 ppm tin after said separation.
- 18. The organotin-catalyzed, reaction product containing less than 100 ppm tin produced by the process of claim 17.
- 19. The improved process of claim 17, further comprising after the phase separation; reusing the solid, heterogeneous, organotin, silane catalyst as a catalyst for an esterification, transesterification reaction or urethane, urea, silicone, or amino forming reaction.
- 20. An improved catalyzed esterification or transesterification reaction process or a urethane, urea, silicone, or amino reaction process involving reactants and forming reaction products that are in a non-solid phase under reaction conditions, wherein the improvement comprises:
(a) utilizing as the catalyst, the solid heterogeneous organotin functionalized silane catalyst of claim 3, 4, 5 or 6(b) continuously passing reactants for said esterification, transesterification, or urethane, urea, silicone, or amino forming reaction through a reactor containing said solid catalyst; and, (c) continuously separating reaction product from the solid catalyst by removing reaction product of said esterification, transesterification, or urethane, urea, silicone, or amino forming reaction from said reactor.
- 21. The tin catalyzed reaction product produced by the process of claim 20 and containing less than 100 ppm tin.
- 22. A process of producing organotin silane or mixture of organotin silanes comprising reacting 1,1-dihalosilacyclobutane with a tin halide to yield a mixture of 3-(trihalosilyl)propyltin compounds in the presence of a catalytically effective amount of a Lewis acid, wherein the tin halide compound comprises a compound of the formula:
- 23. The process of claim 22 wherein the tin halide is tin tetrachloride and the reaction is carried out at an elevated temperature above 250 C..
- 24. The process of claim 22 wherein the tin halide is an organotin trichloride obtained by selecting at least one R from the alkyl, alkenyl, cycloalkyl, and aryl members of the group.
- 25. The process of claim 22 wherein the tin halide is diorganotin dichloride obtained by selecting two values for R from the alkyl, alkenyl, cycloalkyl, and aryl members of the group.
- 26. The process of claim 22 wherein the tin halide is triorganotin chloride obtained by selecting at least three values for R from the alkyl, alkenyl, cycloalkyl, and aryl members of the group with the R group.
- 27. The process of claims 23, 24, 25 or 26, wherein the 1,1-dihalosilacyclobutane is 1,1-dichlorosilacyclobutane.
- 28. A process of producing an organotin silane comprising reacting 1,1-diorganooxysilacyclobutane with tin halides to yield a mixture of 3-(diorganooxyhaloosilyl)propyltin halides wherein the 5 diorganooxysilacyclobutane is of the formula:
- 29. The process of claim 28 wherein the tin halide is tin tetrachloride.
- 30. The process of claim 28 wherein the tin halide is organotin trichloride obtained by selecting one R from among the alkyl, alkenyl, cycloalkyl, and aryl members of the group.
- 31. The process of claim 28 wherein the tin halide is diorganotin dichloride obtained by selecting two values for R from among the alkyl, alkenyl, cycloalkyl, and aryl members of the group.
- 32. The process of claim 28 wherein the tin halide is triorganotin chloride obtained by selecting e values for R from among the alkyl, alkenyl, cycloalkyl, and aryl members of the group.
- 33. The process of claims 29, 30, 31, or 32 wherein the silacyclobutane is 1,1-dimethoxysilacyclobutane.
- 34. The process of claims 29, 30, 31, or 32 wherein the silacyclobutane is 1,1-diethoxysilacyclobutane. en the remaining value for R2 cannot be butyl.
Parent Case Info
[0001] This Application claims the benefit of U.S. Provisional Application 60/060,331 filed on Sep. 29, 1997.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60060331 |
Sep 1997 |
US |
Divisions (3)
|
Number |
Date |
Country |
Parent |
09645893 |
Aug 2000 |
US |
Child |
10007576 |
Nov 2001 |
US |
Parent |
09428346 |
Oct 1999 |
US |
Child |
09645893 |
Aug 2000 |
US |
Parent |
09160413 |
Sep 1998 |
US |
Child |
09428346 |
Oct 1999 |
US |