Claims
- 1. A crosslinkable organosilicon prepolymer or crosslinked organosilicon polymer comprising alternating hydrocarbon and cyclic polysiloxane residues, which is the hydrosilation reaction product of:
- (a) at least one polyene having at least two non-aromatic, non-conjugated carbon-carbon double bonds highly reactive in hydrosilation, the carbon-carbon double bonds being either in an alpha, beta or gamma position on a linear carbon moiety, next to two bridgehead positions in a strained polycyclic aliphatic ring structure, or in a cyclobutene ring, other than polycyclic polyenes having two reactive double bonds in a fused ring system;
- (b) at least one polycyclic polyene having at least two chemically distinguishable non-aromatic, non-conjugated carbon-carbon double bonds in its rings wherein the at least two carbon-carbon double bonds have highly different rates of reaction in hydrosilation and one of the carbon-carbon double bonds will react prior to substantial reaction of the other carbon-carbon double bond(s);
- (c) at least one cyclic polysiloxane containing three or more .tbd.SiH groups.
- 2. The polymer or prepolymer of claim 1 wherein polyene (a) is a monomer having two non-aromatic, non-conjugated carbon-carbon double bonds highly reactive in hydrosilation of the following general formulae:
- R.sub.1 -R.sub.2 -R.sub.3 (I)
- or
- R.sub.1 -R.sub.3 (II)
- where R.sub.1 and R.sub.3 are selected from the group consisting of vinyl, propenyl, butenyl, isopropenyl and norbornenyl; and R.sub.2 is selected from the group consisting of aliphatic, cycloaliphatic, aromatic, alkoxy, aryloxy, and siloxy radicals, and esters, amides, sulfones, sulfoxides, ketones and ethers; having a total molecular weight of less than 1,000; wherein in formula (II) only one of R.sub.1 and R.sub.3 is norbornenyl.
- 3. The polymer or prepolymer of claim 2 wherein R.sub.2 is selected from the group consisting of substituted or unsubstituted alkyl, alkoxy, aryl, aryloxy, siloxy, ester, amide, sulfone, sulfoxide, ketone and ether.
- 4. The polymer or prepolymer of claim 1 wherein polyene (a) has the general formula: ##STR4## wherein R.sub.2 is selected from the group consisting of substituted or unsubstituted alkyl, alkoxy, aryl, aryloxy, siloxy, ester, amide, sulfone, sulfoxide, ketone and ether.
- 5. The polymer or prepolymer of claim 2 wherein polyene (a) has a total molecular weight less than 500.
- 6. The polymer or prepolymer of claim 4 wherein polyene (a) has a total molecular weight less than 500.
- 7. The crosslinked polymer of claim 1 wherein the polycyclic polyene (b) has two non-aromatic, non-conjugated carbon-carbon double bonds and (i) one of the non-aromatic, non-conjugated carbon-carbon double bonds is next to two bridgehead positions in a strained polycyclic aliphatic ring or in a cyclobutene ring and (ii) the other non-aromatic, non-conjugated carbon-carbon double bond is 1,2 disubstituted and is not next to two bridgehead positions in a strained polycyclic aliphatic ring structure and is not in a cyclobutene ring.
- 8. The crosslinked polymer of claim 2 wherein in the polycyclic polyene (b) has two non-aromatic, non-conjugated carbon-carbon double bonds and (i) one of the non-aromatic, non-conjugated carbon-carbon double bonds is next to two bridgehead positions in a strained polycyclic aliphatic ring or in a cyclobutene ring and (ii) the other non-aromatic, non-conjugated carbon-carbon double bond is 1,2 disubstituted and is not next to two bridgehead positions in a strained polycyclic aliphatic ring structure and is not in a cyclobutene ring.
- 9. The polymer or prepolymer of claim 1 wherein the polycyclic polyene (b) has the general formula: ##STR5## wherein n is 0, 1, 2 or 3.
- 10. The polymer or prepolymer of claim 1 wherein polycyclic polyene (b) is dicyclopentadiene.
- 11. The polymer of prepolymer of claim 1 wherein the cyclic polysiloxane (c) has the general formula: ##STR6## wherein R is hydrogen, a saturated, substituted or unsubstituted alkyl or alkoxy radical, a substituted or unsubstituted aromatic or aryloxy radical, n is an integer from 3 to about 20, and R is hydrogen on at least three of the silicon atoms in the molecule.
- 12. The polymer or prepolymer of claim 1 wherein the cyclic polysiloxane (c) is selected from the group consisting of tetra- and penta-methylcyclotetrasiloxanes, tetra-, penta- and hexa-methylcyclopentasiloxane, tetra-, penta- and hexa-methylcyclohexasiloxane, tetraethyl cyclotetrasiloxane and tetraphenyl cyclotetrasiloxane.
- 13. The polymer or prepolymer of claim 9 wherein the cyclic polysiloxane (c) is selected from the group consisting of tetra- and penta-methylcyclotetrasiloxanes, tetra-, penta- and hexa-methylcyclopentasiloxane, tetra-, penta- and hexa-methylcyclohexasiloxane, tetraethyl cyclotetrasiloxane and tetraphenyl cyclotetrasiloxane.
- 14. The polymer or prepolymer of claim 1 wherein the cyclic polysiloxane (c) is selected from the group consisting of tetra- and penta-methylcyclotetrasiloxanes, tetra-, penta- and hexa-methylcyclopentasiloxane, tetra-, penta- and hexa-methylcyclohexasiloxane.
- 15. The polymer or prepolymer of claim 1 wherein polyene (a) and polycyclic polyene (b) each have only two carbon-carbon double bonds, both of which are reactive in hydrosilation and wherein: ##EQU4##
- 16. The polymer or prepolymer of claim 15 wherein: ##EQU5##
- 17. The polymer of prepolymer of claim 15 wherein polyene (a) is 5-vinyl-2-norbornene and polycyclic polyene (b) is dicyclopentadiene, and the ratio of double bonds in (a) and (b) to SiH bonds in (c) is in the range of 1.1:1 to 1.2:1.
- 18. The polymer of claim 1 which is reinforced with fibers.
- 19. A prepolymer as claimed in claim 1 having 30 to 75% of the SiH groups of the cyclic polysiloxane (c) reacted.
Parent Case Info
This is a continuation-in-part of U.S. patent application Ser. No. 07/422,214, filed Oct. 16, 1989, now U.S. Pat. No. 5,008,360.
US Referenced Citations (14)
Foreign Referenced Citations (2)
Number |
Date |
Country |
204171 |
Oct 1986 |
EPX |
767112 |
Sep 1980 |
SUX |
Non-Patent Literature Citations (1)
Entry |
Wilhelm Risse et al., "Di-Tetrafunctional Initiators for the Living Ring-Opening Olefin Metathesis Polymerization of Strained Cyclic Olefins"--(1989 American Chemical Society), Macro Molecules, vol. 22, No. 8, 1989. |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
422214 |
Oct 1989 |
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