Claims
- 1. Polymerizable and cross-linkable derivative of chlorosilane, hydroxysilane or alkoxysilane type of polysaccharides or oligosaccharides, constituted by linear, branched or cyclic linkages of osidic chiral units and represented by one of the following formulae (Ia) to (Ik):
- 2. Silane derivative of polysaccharide according to claim 1, characterized in that the aryl radicals are phenyl or naphthyl radicals and/or the arylene radicals are phenylene or naphthylene radicals.
- 3. Silane derivative of polysaccharide according to claim 1, in which the arylene or aryl radicals contained respectively in the radicals of general formulae (II) and (III) are substituted by one or more atoms or radicals, identical or different, chosen from halogen atoms, alkyl radicals containing from 1 to 4 carbon atoms, alkoxy radicals containing from 1 to 4 carbon atoms and nitro groups.
- 4. Silane derivative of polysaccharide according to claims 1, characterized in that the degree of polymerization is between 5 and 20 000.
- 5. Silane derivative of polysaccharide according to claim 1, characterized in that it contains from 0.05 to 2.95 groups of general formula (II) per structural unit and from 0.05 to 2.95 groups of general formula (III) per osidic chiral unit.
- 6. Polymerized compound originating from a derivative according to claim 1, characterized in that it is represented by one of general formulae (IXaa), (IXa), (IXbb), (IXb) and (XII) of the description.
- 7. Cross-linked compound originating from a derivative according to claim 1, characterized in that it is represented by one of general formulae (IXc), (IXd), (XIII) and (XIV):
- 8. Preparation method for a silane derivative of polysaccharide according to claim 1, characterized in that it is reacted on a polysaccharide:
in stage 1, a product of general formula (CH2═CH)mA—Y1 (IV) in which A is defined as in claim 1 and Y1 represents a halogen atom, an —N═C═O group or —N═C═S remainder or a —CO—Z— remainder in which Z represents a halogen atom in order to introduce an ethylene radical which will be subsequently transformed in stage 3; in an optional stage 2, an isocyanate or an isothiocyanate of general formula A2—A1—N═C═X (V) in which A2 is defined as in claim 1 and X represents an oxygen or sulphur atom or a product of general formula A2—A1—CO—Z1 (VI) in which A2 and A1 are defined as in claim 1 and Z1 represents a halogen atom in order to introduce a radical of general formula (III); and in stage 3, a product of general formula: 38in which X is defined as in claim 1 in order to introduce a radical of general formula (II).
- 9. Support material characterized in that it contains a silane derivative or derivatives of polysaccharides of general formula (Ia) to (Ik) according to claim 1, and of which the chlorosilane, hydroxysilane or alkoxysilane radicals of general formula (II) are reacted, concomitantly, between themselves, in order to lead to a polymerization and/or an interchain cross-linking in the silane derivative or derivatives of polysaccharides, and with a support for the creation of covalent bonds —Si—O-(Support)-, said support materials being represented by the combination of general formulae (IXaa), (IXa), (IXbb), (IXb), (IXc), (IXd), (XII), (XIII) and (XIV), where “chiral unit” corresponds to one of the osidic chiral units contained in the polysaccharide linkage represented by general formulae (Ia) to (Ik).
- 10. Support material according to claim 9 characterized in that it is represented by general formula (IX), combination of formula (XII) and formula (IXc) form=1, m having the same meaning as in formula (II):
- 11. Support material according to claim 9, characterized in that the silane derivative of polysaccharide of formulae (Ia) to (Ik) which contain it is polymerized or cross-linked in a three-dimensional network by the formation of the following bonds:
≡Si—O—Si≡ or 40
- 12. Support material according to claim 9, characterized in that the silane derivative of polysaccharide is both bound to the support by a chemical covalent bond and polymerized or cross-linked in a three-dimensional network.
- 13. Support material according to claims 9, characterized in that it contains at least one compound of general formula (IXaa), (IXa), (IXbb), (IXb) or (XII).
- 14. Support material according to claim 9, in the form of a three-dimensional network characterized in that it contains at least one compound of general formula (IXc), (IXd) (XIII) or (XIV).
- 15. Support material according to claim 9 characterized in that the support carrying covalent bonds is represented by the following general formula:
- 16. Support material according to claim 9, characterized in that its granulometry is comprised between 0.1 μm and 1 mm and its porosity between 0.1 m2/g and 800 m2/g.
- 17. Method for obtaining a support material according to claim 9, characterized in that a silane derivative of polysaccharide is deposited on a support and then said silane derivative of polysaccharide is reacted with the support and in a concomitant fashion with itself in order to create covalent bonds between the silane derivative of polysaccharide and the support and to cross-link the silane derivative of polysaccharide and the support and to cross-link the silane derivative of polysaccharide in a three-dimensional network, said method comprising:
physically depositing a silane derivative of polysaccharide of general formula (Ia) to (Ik) on a support of general formula: 42where Si has the same meaning as in formula (X): and implementing two reaction methods consisting of:
reaction of the silane radicals of general formula (II) with the support, of general formula (XI), to lead to the compounds of general formula (IXaa), (IXa), (IXbb), (IXb), and (XII): 43and/or reaction of the silane radicals of general formula (II) on themselves in order to lead to compounds of general formula (IXc), (IXd), (XII) and (XIV).
- 18. A method comprising preparing or separating claim 9 by liquid or gaseous or supercritical chromatography, or by electrophoresis or electrochromatography utilizing a support according to claim 18.
- 19. A percolation membrane comprising a composition according to claim 9.
- 20. Process of organic synthesis in heterogeneous phase, characterized in that the heterogeneous phase is constituted by a support material according to claim 9.
- 21. A derivative according to claim 1, wherein at least one of the symbols R1, R2 and R3 represents formula II.
Priority Claims (1)
Number |
Date |
Country |
Kind |
98/11.377 |
Sep 1998 |
FR |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This is a continuation-in-part of U.S. application Ser. No. 09/394,868 filed on Sep. 13, 1999.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09394868 |
Sep 1999 |
US |
Child |
09808190 |
Mar 2001 |
US |