Claims
- 1. A trialkylsilane comprising:
(a) a hydrocarbon backbone comprising one to ten carbons atoms, (b) a terminal trialkylsilyl moiety on the hydrocarbon backbone, wherein at least two of the alkyl groups independently comprise at least six carbon atoms, and (c) a terminal silyl moiety on the hydrocarbon backbone that has at least one hydrolyzable group bound to a silicon of the silyl moiety.
- 2. The trialkylsilane of claim 1, wherein the hydrocarbon backbone comprises two to five carbon atoms.
- 3. The trialkylsilane of claim 1, wherein at least one of the alkyl groups of the trialkylsilyl moiety is substituted.
- 4. The trialkylsilane of claim 1, wherein at least one of the alkyl groups of the trialkylsilyl moiety is substituted with at least one halogen.
- 5. The trialkylsilane of claim 1, wherein at least one of the alkyl groups of the trialkylsilyl moiety is branched.
- 6. The trialkylsilane of claim 1, wherein at least one of the alkyl groups of the trialkylsilyl moiety is a perfluoroalkyl group.
- 7. The trialkylsilane of claim 1, wherein the at least two alkyl groups of the trialkylsilyl moiety independently comprise ten to eighteen carbon atoms.
- 8. The trialkylsilane of claim 1, wherein the trialkylsilyl moiety comprises two alkyl groups of at least six carbon atoms and a linear or branched, substituted or unsubstituted alkyl group of one to four carbon atoms.
- 9. The trialkylsilane of claim 8, wherein the alkyl group of one to four carbon atoms is a methyl group.
- 10. The trialkylsilane of claim 1, wherein the silyl moiety that has at least one hydrolyzable group comprises at least one substituted alkyl chain of one to four carbon atoms or an aryl group.
- 11. The trialkylsilane of claim 1, wherein the silyl moiety that has at least one hydrolyzable group comprises at least one branched alkyl chain of one to four carbon atoms or an aryl group.
- 12. The trialkylsilane of claim 1, wherein the at least one hydrolyzable group is selected from the group consisting of a halogen, an alkylamine group, a dialkylamine group, and an alkoxy group.
- 13. The trialkylsilane of claim 12, wherein the hydrolyzable group is selected from the group consisting of chlorine and dimethylamine.
- 14. The trialkylsilane of claim 1, wherein the trialkylsilane is a dialkylmethylsilylethylsilane.
- 15. A trialkylsilane represented by the formula (I):
- 16. The trialkylsilane of claim 15, wherein R2 is substituted with at least one halogen.
- 17. The trialkylsilane of claim 15, wherein R2 is a perfluoroalkyl chain.
- 18. The trialkylsilane of claim 15, wherein R2 is —Rf CH2CH2, and Rf is independently selected from the group consisting of C6(PX)13 CH2CH2—, C8(PX)17 CH2CH2—, or C10(PX)21 CH2CH2—, and PX is a halogen.
- 19. The trialkylsilane of claim 16, wherein PX is a fluorine.
- 20. The trialkylsilane of claim 15, wherein p is an integer from 2 to 5.
- 21. The trialkylsilane of claim 15, wherein R1 is a methyl group.
- 22. The trialkylsilane of claim 15, wherein X is independently selected from the group consisting of a halogen, an alkylamine group, a dialkylamine group, and an alkoxy group.
- 23. The trialkylsilane of claim 15, wherein X is selected from the group consisting of chlorine and dimethylamine.
- 24. The trialkylsilane of claim 15, wherein the trialkylsilane is a dialkylmethylsilylethylsilane.
- 25. A treated substrate for use in chromatographic applications comprising a substrate and a trialkylsilane, wherein the trialkylsilane comprises:
(a) a hydrocarbon backbone comprising one to ten carbons atoms, (b) a terminal trialkylsilyl moiety on the hydrocarbon backbone, wherein at least two of the alkyl groups independently comprise at least six carbon atoms, (c) a terminal silyl moiety on the hydrocarbon backbone, wherein the silicon of the silyl moiety is bound to the substrate, such that the at least two alkyl groups of the trialkylsilyl moiety extend to provide a bonded phase useful for reproducible molecular interaction.
- 26. A method of for preparing a trialkylsilane for use in chromatographic applications, the method comprising:
(a) preparing a disubstituted vinylsilane by reacting an organomagnesium reagent and a vinylfunctional silane; (b) reacting the disubstituted vinylsilane of step (a) and a monomeric silane containing a silicon-hydrogen bond in the presence of a metallic catalyst, such that the monomeric silane is added to a vinyl group of the vinylsilane, thereby binding the silicon of the monomeric silane to a terminal carbon of the vinyl group and forming a trialkylsilane having a terminal trialkylsilyl moiety, wherein at least two alkyl groups of the trialkylsilyl moiety independently comprise at least six carbons atoms and the at least two alkyl groups extend from a silicon of the prepared disubstituted vinylsilane of step (a).
- 27. The method of claim 26, wherein the vinylfunctional silane of step (a) is an alkyl vinylfunctional silane.
- 28. The method of claim 26, wherein the vinylfunctional silane of step (a) is an aryl vinylfunctional silane.
- 29. The method of claim 26, further comprising providing at least one hydrolyzable group to the monomeric silane, such that the resulting trialkylsilane comprises at least one hydrolyzable group for use in binding the trialkylsilane to a substrate.
- 30. The method of claim 30, wherein the at least one hydrolyzable group is selected from the group consisting of a halogen, an alkylamine group, a dialkylamine group, and an alkoxy group.
- 31. The method of claim 30, wherein the hydrolyzable group is selected from the group consisting of chlorine and dimethylamine.
- 32. The method of claim 26, wherein the trialkylsilane is a dialkylmethylsilylethylsilane.
- 33. The method of claim 26, wherein the metallic catalyst of step (b) is selected from the group consisting of platinum-divinyltetramethyldisiloxane complex, platinum-cyclovinylmethylsiloxane complex, chloroplatinic acid, chloroplatinic acid complexes, chloroplatinic acid solutions, and tris-triphenyl phosphine rhodium chloride.
- 34. A method for forming a bonded phase for use in chromatographic applications, the method comprising:
(a) forming a trialkylsilane comprising a hydrocarbon backbone having one to ten carbon atoms; a terminal trialkylsilyl moiety on the hydrocarbon backbone, wherein at least two of the alkyl groups of the trialkylsilyl moiety independently comprise six to eighteen carbon atoms; a terminal silyl moiety on the hydrocarbon backbone, wherein the silicon of the silyl moiety is capable of being bound to a substrate, and (b) reacting the trialkylsilane of step (a) with the substrate comprising silicon in the presence of a hydroxy-containing compound to form a Si—O—Si bond between the silicon of the silyl moiety and the silicon of the substrate, such that the at least two alkyl groups of the trialkylsilyl moiety extend to provide a bonded phase useful for reproducible molecular interaction.
- 35. The method of claim 34, wherein step (b) further comprises reacting the trialkylsilane and substrate in a solvent solution and wherein the method further comprises separating the substrate from the solvent solution.
- 36. A column for use in chromatographic applications comprising a treated substrate that contains a trialkylsilane, wherein the trialkylsilane comprises
(a) a hydrocarbon backbone comprising one to ten carbons atoms, (b) a terminal trialkylsilyl moiety on the hydrocarbon backbone, wherein at least two of the alkyl groups independently comprise at least six carbon atoms, (c) a terminal silyl moiety on the hydrocarbon backbone, wherein the silicon of the silyl moiety is bound to the substrate, such that the at least two alkyl groups of the trialkylsilyl moiety extend to provide a bonded phase useful for reproducible molecular interaction.
- 37. The column of claim 36, wherein at least one of the alkyl groups of the trialkylsilyl moiety is substituted with at least one halogen.
- 38. The column of claim 36, wherein at least one of the alkyl groups of the trialkylsilyl moiety is a perfluroalkyl group.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit under 35 U.S.C. § 119(e) of U.S. Provisional Patent Application No. 60/288,302, filed May 3, 2001, the contents of which are incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60288302 |
May 2001 |
US |