Claims
- 1. An azasilacyclopentane having formula (I),
- 2. The azasilacyclopentane according to claim 1, wherein R1 and R2 each contain 1 to 3 carbon atoms.
- 3. The azasilacyclopentane according to claim 1, wherein R1 and R2 are independently optionally substituted with functional groups selected from the group consisting of amines, esters, and carboxylate esters.
- 4. The azasilacyclopentane according to claim 1, wherein R3 contains 1 to 20 carbon atoms.
- 5. The azasilacyclopentane according to claim 1, wherein R3 contains 2 to 18 carbon atoms.
- 6. The azasilacyclopentane according to claim 1, wherein R1 and R2 are independently selected from the group consisting of methyl, ethyl, methoxy, and ethoxy groups, and R3 is selected from the group consisting of alkyl, allyl, aminoalkyl groups and hydrogen.
- 7. The azasilacyclopentane according to claim 1, wherein R1 is selected from the group consisting of branched and linear, substituted and unsubstituted alkoxy groups, and R2 is selected from the group consisting of branched and linear, substituted and unsubstituted alkyl and alkoxy groups.
- 8. The azasilacyclopentane according to claim 7, wherein R1 is a methoxy or ethoxy group.
- 9. The azasilacyclopentane according to claim 1, wherein R3 is selected from the group consisting of substituted and unsubstituted alkyl groups having at least 2 carbon atoms, and substituted and unsubstituted allyl, alkenyl, and alkynyl groups.
- 10. The azasilacyclopentane according to claim 1, wherein R3 is substituted with an amino group.
- 11. A diazasilacyclic compound having the formula (III)
- 12. The diazasilacyclic compound according to claim 11, wherein R3 is selected from the group consisting of hydrogen and linear alkyl groups having 1 to 4 carbon atoms.
- 13. The diazasilacyclic compound according to claim 11, wherein R4 and R5 are independently selected from the group consisting of substituted and unsubstituted, branched and linear alkyl and alkoxy groups having 1 to 3 carbon atoms.
- 14. The diazasilacyclic compound according to claim 11, wherein R3, R4 and R5 are independently optionally substituted with functional groups selected from the group consisting of amines, esters, carboxylate esters, and aromatic groups.
- 15. The diazasilacyclic compound according to claim 11, wherein R3 is hydrogen, R4 is a substituted or unsubstituted alkyl group and R5 is an unsubstituted alkyl or alkoxy group.
- 16. An alkoxysilylalkylaminosilane having the formula (IV)
- 17. The alkoxysilylalkylaminosilane according to claim 16, wherein R6 is a saturated or unsaturated, substituted or unsubstituted aliphatic hydrocarbon group containing 1 to 20 carbon atoms.
- 18. The alkoxysilylalkylaminosilane according to claim 17, wherein R6 is selected from the group consisting of substituted and unsubstituted methyl, ethyl, propyl, butyl, and allyl groups.
- 19. The alkoxysilylalkylaminosilane according to claim 16, wherein R7 contains about 1 to 3 carbon atoms.
- 20. The alkoxysilylalkylaminosilane according to claim 16, wherein R6 and R7 are independently selected from the group consisting of substituted and unsubstituted alkyl groups.
- 21. The alkoxysilylalkylaminosilane according to claim 16, wherein R6 is optionally substituted with a functional group selected from the group consisting of amines, esters, carboxylate esters, and aromatic groups.
- 22. An azasilane selected from the group consisting of compounds having formula (I), formula (III), and formula (IV):
- 23. A method for producing a volatile cyclic azasilane or acyclic azasilane comprising reacting an aminoalkoxysilane with a compound selected from the group consisting of an ammonium salt, sulfuric acid and a phosphonium salt.
- 24. The method according to claim 23, further comprising continuously removing an alcohol byproduct from the reaction.
- 25. The method according to claim 23, wherein the ammonium salt is selected from the group consisting of an ammonium halide, ammonium phosphate, ammonium sulfate, and ammonium trifluoromethanesulfonate.
- 26. The method according to claim 25, wherein the ammonium salt is selected from the group consisting of ammonium sulfate and ammonium chloride.
- 27. The method according to claim 23, wherein the reaction is performed neat or in tetrahydrofuran or hydrocarbon solvent.
- 28. The method according to claim 23, wherein the reaction is performed at a temperature of room temperature to about 150° C.
- 29. The method according to claim 28, wherein the reaction is performed at a temperature of about 120 to about 140° C.
- 30. The method according to claim 23, wherein the aminoalkoxysilane contains at least two linear or branched alkoxysilane substituents having 1 to 6 carbon atoms.
- 31. The method according to claim 23, wherein the aminoalkoxysilane contains an optionally substituted amino substituent located about 3 to 6 carbon atoms from silicon.
- 32. The method according to claim 31, wherein the amino substituent contains an optionally substituted alkyl, allyl, or amino group.
- 33. The method according to claim 23, wherein the azasilane is selected from the group consisting of compounds having formula (1), formula (III), and formula (IV):
- 34. The method according to claim 23, further comprising removing a compound having formula (IV) from the reaction:
- 35. A method for functionalizing a hydroxyl-containing substrate comprising treating the substrate with a volatile cyclic azasilane in the absence of water, wherein the cyclic azasilane is produced in the absence of halogen-containing compounds.
- 36. The method according to claim 35, wherein the cyclic azasilane contains no alkoxy substituent on silicon.
- 37. The method according to claim 36, wherein no byproducts are formed.
- 38. The method according to claim 35, wherein the substrate is selected from the group consisting of fumed silica, zinc oxide, titanium dioxide, silicon dioxide, glass, quartz, alumina, sapphire, titanium, and germanium.
- 39. The method according to claim 35, wherein the substrate is treated in a vapor or liquid state.
- 40. The method according to claim 35, wherein the method is performed neat or in an alkanol solvent.
- 41. A method for effecting a high density monolayer on a hydroxyl-containing substrate comprising treating, the substrate with a volatile cyclic azasilane in the absence of water, and subsequently condensing the monolayer by a reaction with water, wherein the cyclic azasilane is produced in the absence of halogen-containing compounds.
- 42. The method according to claim 41, wherein the substrate is selected from the group consisting of fumed silica, zinc oxide, titanium dioxide, silicon dioxide, glass, quartz, alumina, sapphire, titanium, and germanium.
- 43. The method according to claim 41, wherein the cyclic azasilane contains at least one alkoxy substituent on silicon.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Patent Application No. 60/374,638, filed Apr. 23, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60374638 |
Apr 2002 |
US |