Claims
- 1. A method of preparing a block copolymer having blocks of the formula ##STR50## comprising reacting a first polymer block
- (R').sub.b M--Y--P--Y--M(R').sub.b
- where
- each M is independently tin, germanium, lead, or thallium;
- each R' is independently a substituted or unsubstituted alkyl or aryl group;
- each Y is independently oxygen, sulfur, or substituted nitrogen or phosphorus;
- each b is an integer one less than the valence of the element M to which it pertains;
- P is a divalent polyolefin, polyester, polyamide, polyphenylene ether ketone, polyalkylene ether ketone, polytetrahydrofurane, polydimethylsiloxane, polymethylphenylsiloxane, polyphenylene ether sulfone, polyalkylene ether sulfone, polycarbonate, or polyurethane polymeric group;
- with a second polymer block ##STR51## where each X is independently halide, imidazole, RO--, RS--, or a group capable of reacting with the first reactant to eliminate a by-product containing M and X, R being a substituted or unsubstituted aromatic or aliphatic group or hydrogen;
- each B is independently carbon, phosphorus, sulfur, silicon, or a direct bond;
- each Z is independently oxygen, sulfur, or an imino group;
- each D is independently an aromatic, aliphatic, RO--, RS--, or R.sub.2 N-- group if B is phosphorus and an aryl, alkyl, or RO-- group if B is silicon;
- each d is independently 1 if B is carbon; 0 or 1 if B is phosphorus; 0, 1 or 2 if B is sulfur; and 0 if B is silicon or a direct bond;
- each e is independently 0 if B is carbon, sulfur, or a direct bond; 1 if B is phosphorus; and 2 if B is silicon; and
- Q is a divalent polyester, polyamide, polyphenylene ether ketone, polyphenylene ether sulfone, polycarbonate, polydimethylsiloxane, or polymethylphenylsiloxane polymeric group.
- 2. A method according to claim 1 wherein R' is lower alkyl; M is tetravalent tin; Y is oxygen or NR.sub.2, where R.sub.2 is lower alkyl or hydrogen; X is chloride or bromide; B is carbon; and Z is oxygen.
- 3. A method according to claim 1 or 2 wherein P is a polydimethylsiloxane or polymethylphenylsiloxane polymeric group.
- 4. A method according to claim 1 or 2 wherein Q is a polydimethylsiloxane or polymethylphenylsiloxane polymeric group.
- 5. A method according to claim 1 or 2 wherein P is a polyamide or polyester polymeric group.
- 6. A method according to claim 1 or 2 wherein Q is a polyamide or polyester polymeric group.
- 7. A method according to claim 1 or 2 wherein P and Q are independently a polyamide or polyester polymeric group.
- 8. A method according to claim 2 wherein the first polymer block
- (R').sub.b M--Y--Al--Y--M(R').sub.b
- is prepared by reacting a stoichiometric excess of a nucleophilic reactant
- (R').sub.b M--Y--A.sup.1 --Y--M(R').sub.b
- where each A.sup.1 is independently an aromatic, aliphatic, aromatic/aliphatic, heterocyclic, alicyclic, siloxyl, or silane monomeric, oligomeric or polymeric moiety; with an electrophilic reactant selected from the group consisting of
- (i) a compound of the formula ##STR52## where A.sup.2 is an aromatic, aliphatic, aromatic/aliphatic, heterocyclic, alicyclic, siloxyl, or silane monomeric, oligomeric, or polymeric moiety, which can be the same as or different from A.sup.1, or a direct bond; and
- (ii) a compound of the formula ##STR53## provided that B is not a direct bond; and (iii) combinations of (i) and (ii).
- 9. A method according to claim 8 wherein A.sup.1 is substituted or unsubstituted p-phenylene, m-phenylene, 1,4-napthylene, 2,6-naphthylene, 2,6-pyridinediyl, 2,6-pyridinediyl, C-1 through C-6 saturated or unsaturated alkylene, or
- --p--Ph--K--p--Ph--
- where p--Ph is p-phenylene and K is a direct bond, O, S, carbonyl, sulfone, or C-1 through C-6 saturated, unsaturated, or fluorinated alkylene.
- 10. A method according to claim 8 wherein A.sup.1 is p-phenylene, m-phenylene, or
- --p--Ph--K--p--Ph--
- where K is sulfone, methylene, or isopropylidene.
- 11. A method according to claim 8 wherein A.sup.2 is substituted or unsubstituted p-phenylene, m-phenylene, 1,4-napthylene, 2,6-naphthylene, 2,6-pyridinediyl, 2,6-pyridinediyl, C-1 through C-6 saturated, unsaturated, or fluorinated alkylene, or a direct bond, or
- --p--Ph--K--p--Ph--
- wherein p--Ph is p-phenylene and K is a direct bond, O, S, carbonyl, sulfone, or C-1 through C-6 saturated, unsaturated, or fluorinated alkylene.
- 12. A method according to claim 8 wherein A.sup.2 is p-phenylene, m-phenylene, or
- --p--Ph--K--p--Ph--
- where K is sulfone, methylene, or isopropylidene.
- 13. A method according to claim 8 wherein A.sup.1 and A.sup.2 are independently selected from the group consisting of p-phenylene, m-phenylene, and
- --p--Ph--K--p--Ph--
- where K is sulfone, methylene, or isopropylidene.
- 14. A method according to claim 2 wherein the second polymer block ##STR54## reacting a nucleophilic reactant
- (R').sub.b M--Y--Al--Y--M(R').sub.b
- where each A.sup.1 is independently an aromatic, aliphatic, aromatic/aliphatic, heterocyclic, alicyclic, siloxyl, or silane monomeric, oligomeric or polymeric moiety; with a stoichiometric excess of an electrophilic reactant selected from the group consisting of
- (i) a compound of the formula ##STR55## where A.sup.2 is an aromatic, aliphatic, aromatic/aliphatic, heterocyclic, alicyclic, siloxyl, or silane monomeric, oligomeric, or polymeric moiety, which is the same as or different from A.sup.1 or a direct bond; and
- (ii) a compound of the formula ##STR56## and (iii) combinations of (i) and (ii).
- 15. A method according to claim 14, wherein A.sup.1 is substituted or unsubstituted p-phenylene, m-phenylene, 1,4-napthylene, 2,6-naphthylene, 2,6-pyridinediyl, 2,6-pyridinediyl, C-1 through C-6 saturated or unsaturated alkylene, or
- --p--Ph--K--p--Ph--
- where p--Ph is p-phenylene and K is a direct bond, O, S, carbonyl, sulfone, or C-1 through C-6 saturated, unsaturated, or fluorinated alkylene.
- 16. A method according to claim 14 wherein A.sup.1 is p-phenylene, m-phenylene, or
- --p--Ph--K--p--Ph--
- where K is sulfone, methylene, or isopropylidene.
- 17. A method according to claim 14 wherein A.sup.2 is substituted or unsubstituted p-phenylene, m-phenylene, 1,4-napthylene, 2,6-naphthylene, 2,6-pyridinediyl, 2,6-pyridinediyl, C-1 through C-6 saturated, unsaturated, or fluorinated alkylene, or a direct bond, or
- --p--Ph--K--p--Ph--
- where p--Ph is p-phenylene and K is a direct bond, O, S, carbonyl, sulfone, or C-1 through C-6 saturated, unsaturated, or fluorinated alkylene.
- 18. A method according to claim 14 wherein A.sup.2 is p-phenylene, m-phenylene, or
- --p--Ph--K--p--Ph--
- where K is sulfone, methylene, or isopropylidene.
- 19. A method according to claim 14 wherein A.sup.2 and A.sup.2 are independently selected from the group consisting of p-phenylene, m-phenylene, and
- --p--Ph--K--p--Ph--
- where K is sulfone, methylene, or isopropylidene.
- 20. A method according to claim 2 wherein the first and second polymer blocks
- (R').sub.b M--Y--P--Y--M(R').sub.b
- and ##STR57## respectively, are prepared by reacting a nucleophilic reactant
- (R').sub.b M--Y--A.sup.1 --Y--M(R').sub.b
- where each A.sup.1 is independently an aromatic, aliphatic, aromatic/aliphatic, heterocyclic, alicyclic, siloxyl, or silane monomeric, oligomeric or polymeric moiety; with a stoichiometric excess of an electrophilic reactant selected from the group consisting of
- (i) a compound of the formula ##STR58## where A.sup.2 is an aromatic, aliphatic, aromatic/aliphatic, heterocyclic, alicyclic, siloxyl, or silane monomeric, oligomeric, or polymeric moiety, which is the same as or different from A.sup.1, or a direct bond; and
- (ii) a compound of the formula ##STR59## and (iii) combinations of (i) and (ii); provided that in the preparation of the first polymer block an excess of nucleophilic reactant is used and that in the preparation of the second polymer block, an excess of the electrophilic reactant is used; and further provided that at least one of A.sup.1 or A.sup.2 in the first polymer block is different from at least one A.sup.1 or A.sup.2 in the second polymer block.
- 21. A method according to claim 20 wherein A.sup.1 is substituted or unsubstituted p-phenylene, m-phenylene, 1,4-napthylene, 2,6-naphthylene, 2,6-pyridinediyl, 2,6-pyridinediyl, C-1 through C-6 saturated or unsaturated alkylene, or
- --p--Ph--K--p--Ph--
- where p--Ph is p-phenylene and K is a direct bond, O,S, carbonyl, sulfone, or C-1 through C-6 saturated, unsaturated, or fluorinated alkylene.
- 22. A method according to claim 20 wherein A.sup.1 is p-phenylene, m-phenylene, or
- --p--Ph--K--p--Ph--
- where K is sulfone, methylene, or isopropylidene.
- 23. A method according to claim 20 wherein A.sup.2 is substituted or unsubstituted p-phenylene, m-phenylene, 1,4-napthylene, 2,6-naphthylene, 2,-pyridinediyl, 2,6-pyridinediyl, C-1 through C-6 saturated, unsaturated, or fluorinated alkylene, or a direct bond, or
- --p--Ph--K--p--Ph--
- where p--Ph is p-phenylene and K is a direct bond, O, S, carbonyl, sulfone, or C-1 through C-6 saturated, unsaturated, or fluorinated alkylene.
- 24. A method according to claim 20 wherein A.sup.2 is p-phenylene, m-phenylene, or
- --p--Ph--K--p--Ph--
- where K is sulfone, methylene, or isopropylidene.
- 25. A method according to claim 20 wherein A.sup.1 and A.sup.2 are independently selected from the group consisting of p-phenylene, m-phenylene, and
- --p--Ph--K--p--Ph--
- where K is sulfone, methylene, or isopropylidene.
Priority Claims (1)
Number |
Date |
Country |
Kind |
8405049 |
Feb 1984 |
GBX |
|
Parent Case Info
This application is a divisional of application No. 07/257,159, filed Oct. 12, 1988, now U.S. Pat. No. 4,845,179 which is a continuation of application No. 07/163,225, filed Feb. 26, 1988, now abandoned, which is a continuation of application No. 06/900,473, filed Aug. 22, 1986, now abandoned, which is a continuation-in-part of application No. 06/833,656, filed Feb. 21, 1986, now abandoned, which is a continuation of application No. 06/704,452, filed Feb. 21, 1985, now abandoned, the disclosures of which are incorporated by reference.
US Referenced Citations (15)
Foreign Referenced Citations (22)
Number |
Date |
Country |
408635 |
Jul 1966 |
AUX |
513182 |
Aug 1967 |
AUX |
513183 |
Sep 1968 |
AUX |
786853 |
Mar 1968 |
CAX |
50821 |
Jun 1982 |
EPX |
861610 |
Aug 1953 |
DEX |
2823297 |
Jul 1978 |
DEX |
2907613 |
Aug 1980 |
DEX |
2128559 |
Sep 1972 |
FRX |
2124371 |
Dec 1972 |
FRX |
2343771 |
Sep 1977 |
FRX |
2456124 |
Oct 1980 |
FRX |
1044015 |
Feb 1966 |
GBX |
1137151 |
Mar 1968 |
GBX |
1549514 |
Aug 1979 |
GBX |
2074574 |
Nov 1981 |
GBX |
77-67170Y38 |
Nov 1968 |
WOX |
72-61414T39 |
Oct 1969 |
WOX |
80-84729C48 |
Oct 1975 |
WOX |
78-68971A39 |
Oct 1976 |
WOX |
80-64330C37 |
Oct 1979 |
WOX |
72-53901T34 |
Nov 1979 |
WOX |
Non-Patent Literature Citations (7)
Entry |
Imperial Chemical Industries, Australian Pat. Appl. No. 17923/1970. |
Farbenfabrik Bayer AG, Australian Pat. Appl. No. 21913/1970. |
Towle et al., "Preparation of Monomers", Ser. No. 07/204,650, filed Jul. 29, 1988. |
Towle et al., "Preparation of Side Chain Polymers", Ser. No. 06/899,460, filed Aug. 22, 1986. |
Kricheldorf et al., Polym. Bull. 1, 383 (1979). |
Chem. Abs. 72:12133v (1970) (Abstract of FR 1,566,217). |
Chem. Abs. 70:115281e (1969) (Abstract of Bull. Soc. Chim. Fr. 1969, pp. 262-263). |
Divisions (1)
|
Number |
Date |
Country |
Parent |
257159 |
Oct 1988 |
|
Continuations (3)
|
Number |
Date |
Country |
Parent |
163225 |
Feb 1988 |
|
Parent |
900473 |
Aug 1986 |
|
Parent |
704452 |
Feb 1985 |
|
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
833656 |
Feb 1986 |
|