Claims
- 1. Hydrolyzable and polymerizable or polyadditive silanes of general formula (I) In which the groups and indices are identical or different and have the following meaning:R=hydrogen, R2—R1—R4—SiXxR33-x, carbonyl, alkyl, alkenyl, aryl, alkylaryl or arylalkyl each having 1-15 carbon atoms, whereby the groups may contain oxygen or sulfur atoms, ester, carbonyl, amide or amino groups; R′=alkylene, arylene, arylenealkene or alkenearylene each with 0 to 15 carbon atoms, whereby these groups may contain oxygen or sulfur atoms, ester, carbonyl, amide or amino groups; R2=alkylene, arylene, arylenealkene or alkenearylene each having 0 to 15 carbon atoms, whereby these groups may contain oxygen or sulfur atoms, ester, carbonyl, amide or amino groups; R3=alkyl, alkene, aryl, alkylaryl or arylalkyl each with 1 to 15 carbon atoms, whereby these groups may contain oxygen or sulfur atoms, ester, carbonyl, amide or amino groups; R4=—(CHR6—CHR6)n—, where n=0 or 1, —CHR6—CHR6—S—R5—, —CHR6—CHR6—NR6—R5—, —Y—CS—NH—R5—, —S—R5, —Y—CO—NH—R5—, —Y—CO—C2H3(COOH)—R5—, —Y—CO—C2H3(OH)—R5—; R5=alkylene, arylene, arylenealkene or alkenearylene each with 1 to 15 carbon atoms, whereby these groups may contain oxygen or sulfur atoms, ester, carbonyl, amide or amino groups; R6=hydrogen, alkyl or aryl with 1 to 10 carbon atoms; R9=hydrogen, alkyl, alkene, aryl, alkylaryl or arylalkyl each with 1 to 15 carbon atoms, whereby these groups may contain oxygen or sulfur atoms, ester, carbonyl, amide or amino groups; X=hydrogen, halogen, hydroxy, alkoxy, acyloxy, alkylcarbonyl, alkoxycarbonyl or NR″2, where R″=hydrogen, alkyl or aryl; Y=—O—, —S— or —NR6—; Z=—O— or —CHR6— or —(CHR6)2—; a=1, 2or 3, with b=1 for a=2or3; b=1,2or3,with a=1 for b=2or3; c=1 to 6, with a+b+c>3 for Z=—O— and R≠R2—R1—R4—SiXxR33-x, and with a+b+c>3 for Z=—CHR6— and R≠R2—R1—R4—SiXxR33-x x=1, 2 or 3; and a+x=2, 3 or 4.
- 2. The silanes of claim 1 and general formula II, wherein index a in general formula I equals 1 and the groups and indices are defined as in claim 1.
- 3. The silanes of claim 1 and general formula III, wherein index b in general formula I equals 1 and the groups and indices are defined as in claim 1.
- 4. The silanes of claim 1 and general formula IV, wherein indices a and b in general formula I equal 1 and the groups and indices are defined as in claim 1.
- 5. The silanes of claim 1 and general formula V, wherein indices a and c in general formula I equal 1 and the groups and indices are defined as in claim 1.
- 6. The silanes of claim 1 and general formula VI, wherein indices b and c in general formula I equal 1 and the groups and indices are defined as in claim 1.
- 7. The silanes of claim 1 and general formula VII, wherein indices a, b and c in general formula I equal 1 and the groups and indices are defined as in claim 1.
- 8. The method of producing by silanes as defined in claim 1, organically modified silicic acid polycondensates or of organically modified hetero silicic acid polycondensates by hydrolytic condensation of at least one hydrolytically condensible compound of silicon and, optionally, of other elements of the group B, Al, P, Sn, Pb, the transition metals, the lanthanides and the actinides, and/or of precondensates derived from the above mentioned compounds, optionally in the presence of a catalyst and/or a solvent, under the influence of water or dampness, wherein 5 to 100 mol-% are selected on the basis of monomeric compounds of the hydrolytically condensible compounds of silanes of general formula (I) in which the groups and indices are defined as in claim 1.
- 9. The method of claim 8, wherein polyadditive and/or radically and/or jonically and/or covalent-nucleophillically polymerizable compounds are used as further hydrolytically condensible componds, optionally in precondensed form.
- 10. The method of use in accordance with claim 8, wherein at least one compound of general formula (VIII) is used as further hydrolytically condensible silicon compounds, if required in precondensed form,Ra(Z′R″)bSiX4-(a+b) (VIII) in which the groups and indices have the following meaning:R=alkyl, alkenyl, aryl,alkylaryl or arylalkyl; R″=alkene or alkenylen, whereby these groups may be interrupted by oxygen or sulfur atoms or by amino groups; X=hydrogen, halogen, hydroxy, alkoxy, acyloxy, alkylcarbonyl, alkoxycarbonyl or NR′2, where R′=hydrogen, alkyl or aryl; Z′=halogen or a, if necessary, substituted amino, amide, aldehyde, alkylcarbonyl, carboxy, mercapto, cyano, alkoxy, alkoxycarbonyl, sulphonic acid, phosphoric acid, acryloxy, methacryloxy, epoxy or vinyl group; a=0, 1, 2 or 3; b=0, 1, 2 or 3, with a+b=1, 2 or 3.
- 11. The method of claim 8, wherein at least one compound of general formula (IX) is used as further hydrolytically condensible compounds of silicon, optionally in precondensed form,{XnRkSi[(R2A)1]4-(n+k)}xB (IX) where the groups and indices have the following meaning:A=O, S, PR′, POR′, NHC(O)0 or NHC(O)NR′, where R′=hydrogen, alkyl or aryl; B=a straight-chain or cross-linked organic group derived from a compound B′ with at least one (for l=1 and A=NHC(O)O or NHC(O)NR′ or at least two C═C double bonds and 5 to 50 carbon atoms, where R′=hydrogen, alkyl or aryl; R=alkyl, alkenyl, aryl, alylaryl or arylalkyl; R2=alkylene, arylene or alkenearylene; X=hydrogen, halogen, hydroxy, alkoxy, acyloxy, alkylcarbonyl, alkoxycarbonyl or NR′2, where R′=hydrogen, alkyl or aryl; n=1, 2 or 3; k=0, 1 or 2; l=0 or 1; x=a whole integer the maximum value of which corresponds to the number of double bonds in compound B′ minus 1, or is equal to the number of double bonds in the compound B1 if l=1 and A is NHC(O)O or NHC(O)NR′.
- 12. The method of claim 11, wher ein a compound of general formula (IX) is used in which the group B is derived from a substituted or unsubstituted compound B′ with two or more acrylate and/or methacrylate groups.
- 13. The method of claim 8, wherein as further hydrolytically condensible compounds at least one of aluminum, titanium and zirconium compounds of formula AIRo3 or MxyRz which are dissolvable in the reaction medium are used, in which M is titanium or zirconium, the groups R, Ro and X are equal or different, Ro is halogen, hydroxy, alkoxy or acyloxy, y is a whole integer from 1 to 4, particularly 2 to 4, z is 0, 1, 2 or 3, preferably 0, 1 or 2 and X and R are defined as in the general formula (I).
- 14. The method of claim 8, wherein at least one radically and/or ionically and/or covalent-nucleophillically polymerizable compound and/or polyadditive compounds is, optionally, added to the polycondensate and wherein the polycondensate is cured by polymerization or polyaddition.
- 15. The method of producing with silanes defined in claim 1, macromolecular materials by ring-scission polymerization of at least one cyclic compound provided with C═C double bonds and/or by polyaddition of thiols to one or more cyclic compounds provided with C═C double bonds, and, optionally, by radical and/or ionic and/or covalent-nucleophillic polymerization of further radically and/or ionically and/or covalent-nucleophillically polymerizable compounds and/or of oligomers derived from the compounds mentioned above, optionally by heating and/or electromagnetic radiation and/or by redox induction and, optionally in the presence of at least one initiator and/or a solvent, wherein 5 to 100 mol-% of the cyclic compound provided with C═C double bonds is selected on the basis of monomeric compounds from the silanes of formula (I) in which the groups and indices are defined as in claim 1.
- 16. The method of claim 15, wherein at least one spiroorthoester, spiroorthocarbonate, bicyclic spiroorthoester, methacryloyl-spiroorthoester, mono- or oligoepoxie is used as a kationic polymerizable compound.
- 17. The method of claim 15, wherein at least one compound of general formula IX{XnRkSi[(R2A)1]4-(n+k)}xB (IX) in which the groups and indices are defines as in claim 11, is used as a radically polymerizable compound.
- 18. The method of claim 15, wherein the polymer or the product of the polyaddition is hydrolycically condensed, optionally in the presence of further hydrolytically condensible compounds of silicon and, optionally of other elements from the group of B, Al, P, Sn, Pb, transitional metals, lanthanides and actinides and/or of precondensates derived from the compounds mentioned above, by the influence of water or humidity, optionally in the presence of a katalyst and/or solvent.
- 19. The method of claim 18, wherein at least one compound of genral formula (VIII)Ra(Z′R″)bSiX4-(a+b) (VIII) in which the groups and indices are defined as in claim 10, is used, optionally in precondensed form, as further condensible compounds of silicon.
- 20. The method of producing with the silanes defined in claim 1, bulk materials, composites, adhesives, grouting and caulking compounds, coating materials, grinding materials coatings, bonding intermediates, fillers, fibers, foils, contact(lenses) and binding materials for particles.
- 21. The method of producing silanes as defined in claim 1, wherein 1 to b mols of a silane of formula HY—R5—)aSiXR34-a-x or HaSiXR34-a-x are converted with a mols of a compound of one of formulae XI and XII, where R7 is OH, OR, Cl or H, and the remaining groups and indices are defined as in claim 1.
- 22. The method of making silanes defined in claim 1, wherein 1 to b mols of a silane of formula (R8—R5—)aSiXR34-a-x is converted with a mols of a compound of general formula XIII, where R8 is a thioisocyanate, isocyanate, epoxy or a cyclic anhydride group and the remaining groups and indices are defined as in claim 1.
- 23. The method of making silanes as defined in claims 1, wherein a silane of general formula (HY—R5—)5SiXR34-a-x is converted with a compound of general formula XIV whereby the groups and indices are defined as in claim 1.
- 24. The method of making silanes as defined in claim 1, wherein a furane, cyclopentadiene or cyclohexadiene derivative is subjected in a Diels-Alder reaction to a silane of general formula [(H2C═CH—)cR1]aSiXxR4-a-x, wherein the groups and indices are defined as in claim 1.
Priority Claims (1)
Number |
Date |
Country |
Kind |
195 24 657 |
Jul 1995 |
DE |
|
Parent Case Info
This is a Continuation-in-Part of application Ser. No.: 08/793,705 filed Mar. 3, 1997 now abandoned.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
5717125 |
Wolter et al. |
Feb 1998 |
|
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
08/793705 |
Mar 1997 |
US |
Child |
09/399301 |
|
US |