Claims
- 1. An ionically cross-linked, shaped or unshaped, polymer, which is insoluble in water, but soluble in a liquid organic medium without the presence of an ionic shielding solvent which contains less than one hydrophilic group per 12 carbon atoms and which corresponds to the formula: ##STR36## in which: the symbol N.sup..sym. represents a quaternary nitrogen-containing group; the symbol ##STR37## represents a macromolecular chain carrying groups which are capable of being linked, via a covalent bond, to -SO.sub.3.sup..crclbar. groups, the symbol ##STR38## represents a macromolecular chain carrying groups which can give rise to the formation of N.sup..sym. groups, the symbol ##STR39## indicating that the N.sup..sym. groups are linked to the macromolecular chain by at least one covalent bond, and the chains ##STR40## considered together, do not contain oppositely charged groups which are capable of forming inter-chain covalent bonds, the ratio n/m is between 0.1 and 10; and the nature of the units forming the macromolecular chains and the values of n and m being such that a polymer of the formula (I.sub.1) ##STR41## in which M represents a hydrogen ion or an alkali metal or alkaline earth metal ion and x is 1 or 2, and a polymer of formula (I.sub.2) ##STR42## in which A represents a hydroxyl radical or the anion of an inorganic or organic acid of formula: AH.sub.y, y being equal to 1, 2 or 3, said polymers of formulae (I.sub.1) and (I.sub.2) both insoluble in water, but soluble in a common liquid organic medium without the presence of an ionic shielding solvent and wherein the macromolecular chain which is linked via a covalent bond to -SO.sub.3.sup..crclbar. groups and the macromolecular chain which is liked via a covalent bond to N.sup..sym. groups both possess a specific viscosity of greater than 0.01 measured at 25.degree. C. on a 2 g/liter solution in dimethylformamide.
- 2. A polymer according to claim 1, in which the polymer of formula (I.sub.1) which gives rise to the structure: ##STR43## consists of a plurality of units of the formula ##STR44## and, optionally, units of the formula:
- --CR.sub.2 R.sub.3 --C(R.sub.3).sub.2 -- (III)
- in which each of the R.sub.1 radicals, which may be identical or different, represents hydrogen or an alkyl radical with 1 to 4 carbon atoms; R represents a group selected from a simple valency bond; a wholly hydrocarbon divalent group, the free valencies of which are carried by a wholly aliphatic, saturated or unsaturated, straight or branched chain, or by an aromatic ring, or by a chain, one of the free valencies being carried by an aliphatic carbon atom and the other free valency by an aromatic carbon atom; a --O--R'-- or --S--R'-- group, R' representing a divalent group as defined above for R; a divalent group consisting of wholly hydrocarbon, aliphatic and/or aromatic groups, linked to one another by oxygen or sulphur atoms, the free valencies being carried by aliphatic and/or aromatic carbon atoms; and a divalent group as defind above in which one or more of the carbon atoms are substituted by a halogen atom or a hydroxyl radical; each of the R.sub.2 radicals, which may be identical or different, represents a hydrogen atom, a halogen atom or an alkyl radical with 1 to 4 carbon atoms; each of the R.sub.3 radicals, which may be identical or different, is as defined under R.sub.2 or represents a --C.tbd. N, --OR.sub.5, ##STR45## group in which R.sub.5 represents a hydrogen atom or a linear or branched alkyl radical containing 1 to 30 carbon atoms, a cycloalkyl radical containing 5 or 6 ring atoms, an aryl radical, an alkoxyaryl radical or an aralkoxy radical.
- 3. A polymer according to claim 2 in which the polymer of formula (I.sub.1) is a copolymer of acrylonitrile and methallylsulphonic acid or a salt thereof.
- 4. A polymer according to claim 2 in which the polymer of formula (I.sub.1) is a copolymer of acrylonitrile and sodium methallyl sulphonate.
- 5. A polymer according to claim 4 in which between 4 and 20% by weight based on the weight of the copolymer of units of formula (I.sub.1) contain --SO.sub.3.sup..crclbar. groups.
- 6. A polymer according to claim 1, in which the polymer of formula (I.sub.1) is a polycondensate comprising a plurality of units of formulae: ##STR46## in which Q.sub.1, which represents the radical of a diacid of the formula: HOOC -- Q.sub.1 -- COOH, is an alkylene radical containing 3 to 10 carbon atoms or a phenylene radical, which alkylene or phenylene radical carries a --SO.sub.3 H substituent; each of T.sub.1, which represents the radical of a diol of the formula: HO -- T.sub.1 -- OH, and T.sub.2, which represents the radical of a diamine of the formula: H.sub.2 N -- T.sub.2 -- NH.sub.2 represents an aliphatic radical with a straight or branched chain containing 3 to 10 carbon atoms, a cycloaliphatic radical with 5 or 6 ring carbon atoms, a monocyclic aromatic radical which is unsubstituted or substituted by one or two alkyl radicals with 1 to 4 carbon atoms, or a radical consisting of several aliphatic or aromatic radicals bonded directly to one another or via a divalent hydrocarbon radical containing 1 to 4 carbon atoms, or via an oxygen, sulphur and nitrogen atom or an -SO.sub.2 - group.
- 7. A polymer according to claim 1, in which the polymer of formula (I.sub.1) is the product of reacting a sulphonating agent with a polymer containing recurring units of one or more of the formulae: ##STR47## and --AR--E-- in which R.sub.1 and R are as defined in claim 2 with the proviso that R' represents a divalent group as defined under R.sub.3, T.sub.1 and R.sub.2 are as defind in claim 6, Q represents an alkylene radical containing 3 to 10 carbon atoms or a phenylene radical, and Ar, which can differ from one unit to another, represents a divalent aromatic radical which is a phenylene radical, optionally substituted by one or two alkyl or aryl radicals, or a radical of the formula: ##STR48## in which L represents an alkylene or alkylidene radical containing 1 to 12 carbon atoms or a --CO-- group; or a divalent radical carrying at least one aromatic substituent, and E, which can differ from one unit to another, represents a --O--, --SO.sub.2 --, --(CH.sub.2).sub.v -- or --C(CH.sub.3).sub.2 -- group, v being from 1 to 4.
- 8. A polymer according to claim 7 in which Ar represents a p-phenylene radical.
- 9. A polymer according to claim 8 in which the polymer of formula (I.sub.1) is a polyaryl ether sulphone.
- 10. A polymer according to claim 1 in which the polymer of formula (I.sub.2) which gives rise to the structure ##STR49## is obtained by reacting a quaternising agent with a polymer containing a plurality of units of the formula: ##STR50## and, optionally, units of formula (III) as defined in claim 2, in which R.sub.1 is as defined in claim 2 and R.sub.6 represents a --N(R.sub.7).sub.2 group or a linear or branched alkyl radical containing 1 to 12 carbon atoms, a cycloalkyl radical with 5 or 6 ring carbon atoms or a phenyl radical, which radical carries a --N(R.sub.7).sub.2 substituent, or a heterocyclic radical containing one or two nitrogen atoms with 5 or 6 ring members, optionally combined with one or two aromatic rings, the atom or at least one of the atoms of the said nitrogen being bonded either by its three valencies to adjacent carbon atoms in the heterocyclic ring, or by two valencies to said ring carbon atoms and by the third to a --R.sub.7 group, each of the R.sub.7 radicals, which may be identical or different, representing an alkyl radical with 1 to 6 carbon atoms.
- 11. A polymer according to claim 10 in which the polymer of formula (I.sub.2) is a copolymer of acrylonitrile and a vinylpyridine.
- 12. A polymer according to claim 11 in which the polymer of formula (I.sub.2) is a copolymer of acrylonitrile and 3-vinyl-6-methyl-pyridine.
- 13. A polymer according to claim 12 in which between 4 and 30% by weight based on the weight of the copolymer contain amino monomer units.
- 14. A polymer according to claim 1, in which the polymer of formula (I.sub.2) is the product of reacting a quaternising agent with a polycondensate containing a plurality of units of formulae: ##STR51## in which Q.sub.2 represents the radical of a diacid of the formula: HOOC--Q.sub.2 --COOH, T.sub.3 represents the radical of a diol of the formula: HO--T.sub.3 --OH and T.sub.4 represents the radical of a diamine of the formula: H.sub.2 N--T.sub.4 --NH.sub.2, at least one of Q.sub.2 and T.sub.3 or T.sub.4 containing a tertiary nitrogen atom.
- 15. A polymer according to claim 14, which comprises rows of units of formula (VIII) bonded to other rows of the same units via ##STR52## groups and, optionally, ##STR53## groups in which ISO represents the radical of a diisocyanate of the formula:
- O .dbd. C .dbd. N -- ISO -- N .dbd. C .dbd. O
- and R.sub.8 represents a valency bond or a -- O --, --NH--NH--, --NH--T.sub.4 --NH--, --O--T.sub.3 --O-- or --NH--NH--CO--NH-- group.
- 16. A polymer according to claim 15 in which the polymer of formula (I.sub.2) is derived from ethyldiethanolamine, adipic acid and 4,4'-diisocyanato-diphenylmethane.
- 17. A polymer according to claim 10, in which the quaternising agent is an alkyl, cycloalkyl or aralkyl halide or sulphate, the alkyl, cycloalkyl or aralkyl radicals containing at most 14 carbon atoms.
- 18. A polymer according to claim 1 in which the polymer of formula (I.sub.2) is the product of reacting a tertiary amine with a halogenated polymer containing a plurality of units of the formula:
- -- .DELTA. -- E --
- in which .DELTA. represents a divalent organic radical carrying a halogen substituent and E is as defined in claim 7.
- 19. A polymer according to claim 18, in which the halogenated polymer is the product of reacting a halomethylating agent with a polymer containing a plurality of units of the formula:
- -- Ar -- E --
- in which Ar and E are as defined in claim 7.
- 20. A polymer according to claim 18, in which the halogenated polymer is the product of reacting epihalohydrin with a poly(hydroxy-ether) containing a plurality of units of the formula: ##STR54## in which .epsilon. represents a divalent radical selected from radicals of the formula: ##STR55##
- 21. A polymer according to claim 18, in which the tertiary amine possesses 3 to 12 carbon atoms and is a trialkylamine, the alkyl radicals of which are either unsubstituted or substituted by a functional group, a heterocyclic amine, quinoxaline, an N-alkylmorpholine or a juxta-nuclear or extra-nuclear aromatic amine.
- 22. A polymer according to claim 21 in which the tertiary amine is an N-dialkylalkanolamine, N-alkyldialkanolamine, a trialkanolamine, pyridine, a picoline, lutidine, N-alkylpiperidine or N,N'-dialkylpiperazine.
- 23. A polymer according to claim 1 which contains, in each of the chains derived from polymers of formulae (I.sub.1) and (I.sub.2), less than 1 hydrophilic group per 20 carbon atoms.
- 24. A polymer according to claim 1 in the form of an isotropic or anisotropic membrane.
- 25. Process for preparing a polymer as defined in claim 1 which comprises forming an organic solution of a polymer of formula (I.sub.1) and a solution of a polymer of formula (I.sub.2), in the same organic solvent or in an organic solvent which is different from but miscible with the said solvent and which is compatible with the polymer of formula (I.sub.1), mixing the two solutions thus produced and isolating the polymer of formula (I) thus produced.
- 26. Process according to claim 25 in which the specific viscosity of each of the polymers of formula (I.sub.1) and (I.sub.2) is greater than 0.01, measured at 25.degree. C. on a 2 g/liter solution of polymer in dimethylformamide.
- 27. Process according to claim 25 in which, in each of the polymers of formula (I.sub.1) and (I.sub.2), there is less than 1 hydrophilic group per 12 carbon atoms.
- 28. In a method of ultrafiltration, dialysis or osmosis the improvement wherein the membrane is a membrane of a polymer as defined in claim 1.
- 29. A polymer according to claim 1 in which the specific viscosity is between 0.05 and 1.5.
- 30. A polymer according to claim 1 in which the ratio ##EQU7## is less than 1.
- 31. A polymer according to claim 30 in which the macromolecular chain which is linked via a covalent bond to -SO.sub.3.sup..crclbar. groups contains only a small proportion of cationic groups and the macromolecular chain which is linked via a covalent bond to N.sup..sym. groups contains only a small proportion of anionic groups.
Priority Claims (1)
Number |
Date |
Country |
Kind |
71.24235 |
Jul 1971 |
FRX |
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Parent Case Info
This is a Continuation of application Ser. No. 268,066 filed June 30, 1972.
US Referenced Citations (6)
Foreign Referenced Citations (4)
Number |
Date |
Country |
1,493,043 |
Jul 1967 |
FRX |
1,493,044 |
Jul 1967 |
FRX |
1,493,045 |
Jul 1967 |
FRX |
1,493,046 |
Jul 1967 |
FRX |
Continuations (1)
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Number |
Date |
Country |
Parent |
268066 |
Jun 1972 |
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