Claims
- 1. An absorbent in chromatography or a carrier material for biologically active substances comprising a crosslinked polymer which consists essentially of (a) vinyl acylate units and (b) units of at least one crosslinking agent of the formula ##STR6## in the presence or absence of (c) units derived from an additional monomer which is copolymerizable with (a) wherein R.sub.1 and R.sub.2 in the formula (I) are identical or different and each denotes vinyl-, 1-acyloxyvinyl, allyl-, or 2-acyloxyally, A represents a divalent hydrocarbon radical of 2 to 8 carbon atoms, the units of the crosslinking agent accounting for 0.1 to 60% by weight of the polymer and wherein the acylate groups of the vinyl acylate units are at least partially hydrolyzed.
- 2. The absorbent or carrier material as claimed in claim 1, wherein said polymer contains vinyl acetate units.
- 3. The absorbent or carrier material as claimed in claim 1, wherein the acyloxy group in the radicals R.sub.1 and R.sub.2 of the formula (I) has 2 to 6 carbon atoms.
- 4. The absorbent or carrier material as claimed in claim 1, wherein the units of crosslinking agent account for 1 to 50% by weight of said polymer.
- 5. The absorbent or carrier material as claimed in claim 1, wherein at least 10% by weight of the acyloxy groups of the vinyl acylate units are replaced by hydroxyl groups.
- 6. A process for preparing a crosslinked polymer consisting essentially of vinyl acylate units and units of at least one crosslinking agent of the formula ##STR7## wherein R.sub.1 and R.sub.2 in the formula (I) are identical or different and each denotes vinyl, 1-acyloxyvinyl, allyl or 2-acyloxyallyl, A represents a divalent hydrocarbon radical of 2 to 8 carbon atoms, the amount of these crosslinking agent units accounting for 0.1 to 60% by weight of the polymer comprising the steps of: bead polymerizing (i) vinyl acylate with (ii) a crosslinking agent of formula (I) in the presence or absence of (iii) an additional monomer which is present in an amount not exceeding 10% by weight of the total polymer, and which is copolymerizable with the vinyl acylate, said bead polymerizing step occurring at a temperature of 20.degree. C. to 150.degree. C. and under a pressure of 1 to 10 bar in the presence of (iv) a dispersion medium; (v) at least one inert diluent present in a volume of 0.02 to 5 times the volume of monomers used, (vi) a dispersion stabilizer and in the absence or presence of (vii) a further additive and (viii) a free-radical initiator with the exclusion of oxygen, and
- hydrolyzing at least partially the acylate groups of the resulting polymer.
- 7. The process as claimed in claim 6, wherein the vinyl acylate is vinyl acetate.
- 8. The process as claimed in claim 6, wherein the dispersion medium is an alkaline aqueous buffer solution.
- 9. The process as claimed in claim 6, wherein the dispersion medium contains 0-50% by weight of an electrolyte.
- 10. The process as claimed in claim 6, wherein the dispersion medium contains a nonionic surfactant as the dispersion stabilizer.
- 11. The process as claimed in claim 6, wherein the polymerization step is carried out in the presence of a dialkyl ether of at least 6 carbon atoms as the inert diluent.
- 12. The process as claimed in claim 6, wherein the acyloxy group in the radicals R.sub.1 and R.sub.2 of the formula (I) has 2 to 6 carbon atoms.
- 13. The process as claimed in claim 6, wherein the units of crosslinking agent account for 1 to 50% by weight of said polymer.
- 14. The process as claimed in claim 6, wherein at least 10% by weight of the acyloxy groups of the vinyl acylate units are replaced by hydoxyl groups.
- 15. The process as claimed in claim 6, wherein the hydrolysis is carried out by swelling the resulting polymer in an alcohol, and adding an aqueous alkali or by swelling said resulting polymer in an alcohol and transesterifying said polymer with catalytic amounts of acid or base.
- 16. An adsorbent for chromatography obtained from the crosslinked polymer as claimed in claim 1.
- 17. The polymer as claimed in claim 1 in the form of macroporous beads with an average particle size of from 20 to 800 .mu.m and an average pore diameter of from 2 to 10,000 nm.
Priority Claims (1)
Number |
Date |
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Kind |
3344912 |
Dec 1983 |
DEX |
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Parent Case Info
This application is a continuation of application Ser. No. 898,749, filed Aug. 18, 1986 which was, in turn, a continuation of application Ser. No. 680,461 filed Dec. 11, 1984, both now abandoned.
US Referenced Citations (12)
Foreign Referenced Citations (3)
Number |
Date |
Country |
2160457 |
Jun 1973 |
FRX |
1304189 |
Jan 1973 |
GBX |
2107333 |
Apr 1983 |
GBX |
Non-Patent Literature Citations (1)
Entry |
Chemical Abstracts, vol. 71 (No. 6), p. 2, No. 50558z (1969). |
Continuations (2)
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Number |
Date |
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Parent |
898749 |
Aug 1986 |
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Parent |
680461 |
Dec 1984 |
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