Claims
- 1. Process of preparing a "living" block polymer by contacting under polymerizing conditions:
- (1) the "living polymer of the formula ##STR37## wherein: Z" is selected from the group consisting of ##STR38## --P(O)(NR'R").sub.2, --P(O)(OR.sup.1).sub.2, --P(O)[OSi(R.sup.1).sub.3 ].sub.2 and --SR;
- each of a and b is independently selected from 0 or a number in the range 1 to about 100,000, provided, however, (a+b) is at least 3;
- Q is the divalent radical selected from the group consisting of ##STR39## and mixtures thereof; X is --CN, --CH.dbd.CHC(O)X' or --C(O)X';
- Y is --H, --CH.sub.3, --CN or --CO.sub.2 R, provided, however, when X is --CH.dbd.CHC(O)X', Y is --H or --CH.sub.3 ;
- X' is OSi(R.sup.1).sub.3, --R, --OR or --NR'R";
- each R.sup.1, independently, is hydrocarbyl of up to 20 carbon atoms or H, provided that at least one R.sup.1 group is not H;
- R is:
- (a) hydrocarbyl of up to 20 carbon atoms;
- (b) hydrocarbyl of (a) containing one or more ether oxygen atoms within aliphatic segments thereof; or
- (c) hydrocarbyl of (a) or (b) containing one or more functional substituents that are unreactive under polymerizing conditions;
- each of R' and R" is independently selected from C.sub.1-4 alkyl;
- each of R.sup.2 and R.sup.3 is independently selected from:
- (a) H;
- (b) hydrocarbyl of up to 20 carbon atoms;
- (c) hydrocarbyl of (b) containing one or more ether oxygen atoms within aliphatic segments thereof; or
- (d) hydrocarbyl of (b) or (c) containing one or more functional substituents that are unreactive under polymerizing conditions;
- Z' is O or N;
- m is 2, 3 or 4;
- n is 3, 4 or 5;
- M is Si, Sn or Ge,
- R.sub.p is of valence p and is:
- (a) a hydrocarbyl radical which is aliphatic, alicyclic, aromatic or aliphatic-aromatic containing up to 20 carbon atoms;
- (b) a polymeric radical containing at least 20 carbon atoms;
- (c) a radical from (a) or (b) containing one or more ether oxygen atoms;
- (d) a radical from (a), (b) or (c) containing one or more keto groups; or
- (e) a radical from (a), (b), (c) or (d) containing one or more functional substituents that are unreactive under polymerizing conditions;
- Z.sup.3 is a diradical selected from the group consisting ##STR40## and mixtures thereof; P is a divalent polymeric radical of the formula ##STR41## k is 0 or 1; and p is an integer and is at least 1 when k is 1 or at least 2 when k is 0, provided however,
- (i) when Z.sup.3 is ##STR42## M is Sn or Ge; (ii) when Z.sup.3 is ##STR43## R.sup.2 and R.sup.3 taken together is ##STR44## and (iii) when Z.sup.3 is ##STR45## R.sup.2 and X' taken together is ##STR46## (2) the monomer selected from the group consisting of CH.sub.2 .dbd.C(Y)X, ##STR47## and mixtures thereof, wherein X, Y and R are as defined above; and (3) a co-catalyst which is a source of fluoride, cyanide or azide ions or a suitable Lewis acid to produce a "living" block polymer containing polymer repeat units of the monomer.
- 2. Process comprising quenching with an active hydrogen source the "living" polymer of the formula selected from ##STR48## wherein: Z" is selected from the group consisting of ##STR49## each of a and b is independently selected from 0 or a number in the range 1 to about 100,000, provided, however, (a+b) is at least 3;
- Q is the divalent radical selected from the group consisting of ##STR50## and mixtures thereof; X is --CN, --CH.dbd.CHC(O)X' or --C(O)X';
- Y is --H, --CH.sub.3, --CN or --CO.sub.2 R, provided, however, when X is --CH.dbd.CHC(O)X', Y is --H or --CH.sub.3 ;
- X' is OSi(R.sup.1).sub.3, --R, --OR or --NR'R";
- each R.sup.1, independently, is hydrocarbyl of up to 20 carbon atoms or H, provided that at least one R.sup.1 group is not H;
- R is:
- (a) hydrocarbyl of up to 20 carbon atoms;
- (b) hydrocarbyl of (a) containing one or more ether oxygen atoms within aliphatic segments thereof; or
- (c) hydrocarbyl of (a) or (b) containing one or more functional substituents that are unreactive under polymerizing conditions;
- each of R' and R" is independently selected from C.sub.1-4 alkyl;
- each of R.sup.2 and R.sup.3 is independently selected from:
- (a) H;
- (b) hydrocarbyl of up to 20 carbona atoms;
- (c) hydrocarbyl of (b) containing one or more ether oxygen atoms within aliphatic segments thereof; or
- (d) hydrocarbyl of (b) or (c) containing one or more functional substituents that are unreactive under polymerizing conditions;
- Z' is O or N;
- m is 2, 3 or 4;
- n is 3, 4 or 5;
- M is Si, Sn or Ge,
- R.sub.p is of valence p and is:
- (a) a hydrocarbyl radical which is aliphatic, alicyclic, aromatic or aliphatic-aromatic containing up to 20 carbon atoms;
- (b) a polymeric radical containing at least 20 carbon atoms;
- (c) a radical from (a) or (b) containing one or more ether oxygen atoms;
- (d) a radical from (a), (b) or (c) containing one or more keto groups; or
- (e) a radical from (a), (b), (c) or (d) containing one or more functional substituents that are unreactive under polymerizing conditions;
- Z.sup.3 is a diradical selected from the group consisting of ##STR51## and mixtures thereof; P is a divalent polymeric radical of the formula ##STR52## k is 0 or 1; and p is an integer and is at least 1 when k is 1 or at least 2 when k is 0, provided however,
- (i) when Z.sup.3 is ##STR53## M is Sn or Ge; (ii) when Z.sup.3 is ##STR54## R.sup.2 and R.sup.3 taken together is ##STR55## and (iii) when Z.sup.3 is ##STR56## R.sup.2 and X' taken together is ##STR57##
- 3. The living polymer formed in the process of claim 1.
- 4. Process of claim 2 wherein the "living" polymer is of formula I.
- 5. Process of claim 2 wherein the "living" polymer is of formula II.
- 6. Process of claim 1 wherein the "living" polymer (1) is contacted under polymerizing conditions a plurality of times sequentially with monomer (2) and co-catalyst (3), provided that the monomer (2) in any sequence is different from that used in the immediately prior sequence.
- 7. Process comprising quenching with an active hydrogen source the "living" polymer of claim 3.
CROSS-REFERENCE TO RELATED APPLICATIONS
This is a division of application Ser. No. 549,409 filed Nov. 7, 1983 and issued April 2, 1985 as U.S. Pat. No. 4,508,880. Ser No. 549,409 is a continuation-in-part of application Ser. No. 389,110 filed June 17, 1982 and issued Nov. 22, 1983 as U.S. Pat. No. 4,417,034. Ser. No. 389,110 is a continuation-in-part of application Ser. No. 279,025 filed June 30, 1981 and now abandoned. Related subject matter is disclosed and claimed by different inventive entity in commonly assigned application Ser. No. 549,408 filed Nov. 7, 1983 and issued June 18, 1985 as U.S. Pat. No. 4,524,196. Ser. No. 549,408 is a continuation-in-part of application Ser. No. 389,111 filed June 17, 1982 and issued Nov. 8, 1983 as U.S. Pat. No. 4,414,372.
US Referenced Citations (5)
Non-Patent Literature Citations (5)
Entry |
Silicon in Organic Synthesis, Colvin, Butterworths, pp. 198-286. |
Chem. Abstracts, vol. 92, entry 147215g. |
Weber, Reagents for Organic Synthesis, Springer-Verlag, N.Y. 1983, pp. 207-234. |
Korshak et al.--Izvestiya Akademie nauk SSSR Otdeleniye Khimichespiph nauk, 1959, Nr. 1, pp. 178-180 (USSR). |
Kolesnikov et al.--Zhwinal obspchey khimie, 1959, vol. 29, Nr. 6, pp. 2042-2045 (USSR). |
Divisions (1)
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Number |
Date |
Country |
Parent |
549409 |
Nov 1983 |
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Continuation in Parts (1)
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Number |
Date |
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Parent |
279025 |
Jun 1981 |
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