Claims
- 1. A polycarbonate consisting essentially of structural units of the following formulae 3 and/or 4: ##SPC16## ##SPC17##
- in which
- Z represents -O-, -S-, -NH- or -NR.sup.1 - or ##EQU3## R and R* are identical or not identical and denote alkylene radicals with 1-20 carbon atoms, cycloalkylene radicals with 5-12 carbon atoms, mononuclear or polynuclear arylene radicals, or heteroarylene radicals bonded via carbon, with up to 14 carbon atoms, monosubstituted or polysubstituted mononuclear or polynuclear arylene radicals, or heteroarylene radicals bonded via carbon, with up to 14 ring carbon atoms and substituted with alkyl, alkoxy or alkylmercapto groups with 1-4 carbon atoms, halogen atoms, -NO.sub.2 or -CN, alkylarylene radicals with a total of up to 30 carbon atoms or aralkylene radicals with a total of up to 30 carbon atoms,
- R.sup.1 denotes alkyl radicals with 1 to 20 carbon atoms, cycloalkyl radicals with 5 to 12 carbon atoms, mononuclear or polynuclear aryl radicals, or heteroaryl radicals bonded via carbon, with up to 14 ring carbon atoms, unsubstituted or substituted with alkyl, alkoxy or alkylmercapto groups with 1 to 4 carbon atoms, halogen atoms, -NO.sub.2 or -CN, alkylaryl radicals with a total of up to 30 carbon atoms, aralkyl radicals with a total of up to 30 carbon atoms or hydroxyalkyl radicals with 1 to 10 carbon atoms,
- Q and Q* are identical or not identical and denote a -COOH, -COOR.sup.2, -CONR.sup.3 R.sup.4, -SO.sub.3 H, -SO.sub.2 NR.sup.3 R.sup.4 or aliphatic OH group,
- R.sup.2 represents alkyl groups with 1-4 carbon atoms,
- R.sup.3 and R.sup.4 independently of one another represent hydrogen, straight-chain or branched alkyl groups with 1-4 carbon atoms or an unsubstituted, monosubstituted or polysubstituted phenyl radical or conjointly with the N atom form a 5-membered or 6-membered ring system and
- a and a* are identical or not identical and denote an integer of from 1 to 4 inclusive,
- R.sup.5 and R.sup.6 independently of one another represent H or alkyl, hydroxyalkyl, carboxyalkyl or alkoxycarbonyl-alkyl groups containing 1-5 carbon atoms, C.sub.5 -C.sub.7 - cycloalkyl groups or C.sub.6 -C.sub.14 - aryl groups or conjointly with the N atom form a 5-membered or 6-membered ring system,
- X denotes an o-, m- or p-phenylene radical or an o-, m- or p-phenylene radical, monosubstituted or polysubstituted with alkyl groups having 1-4 carbon atoms or halogen atoms or denotes a radical characterized by the formula 5 ##SPC18##
- in which
- R.sup.7 and R.sup.8 represent hydrogen atoms, alkyl radicals with 1-4 carbon atoms or halogen atoms and have identical or different meanings, and
- Y denotes a single bond, an alkylene or alkylidene radical with 1-7 carbon atoms, a cycloalkylene or cycloalkylidene radical with 5 to 12 carbon atoms, -O-, -S-, -CO-, -SO-, -SO.sub.2 - or a radical of the formula 6a or 6b ##SPC19##
- wherein
- R.sup.9 to R.sup.11 denote alkyl radicals with 1-4 carbon atoms and
- R.sup.11 can also represent hydrogen or halogen atoms, and
- n is an integer between 1 and 200.
- 2. A polycarbonate consisting essentially of structural units of the following formulae 3 and/or 4: ##SPC20##
- which are branched through structural units of the formula 18 ##SPC21##
- in which X, Z, R, Q, a, R.sup.5, R.sup.6 and n have the same meaning as in claim 1 and the said structural units of formula (18) are present in amounts of 0.01 to 5 mol %, based on the structural units 3 and/or 4, in the complete molecule.
- 3. Polycarbonates according to claim 1 characterized in that
- X denotes a radical characterized by the formula 5 in which
- R.sup.7 and R.sup.8 have the same meaning as in claim 1 and Y is an alkylene or alkylidene radical with 1-7 carbon atoms or a cycloalkylene or cycloalkylidene radical with 5-12 carbon atoms.
- 4. Polycarbonates according to claim 3, characterized in that
- X denotes ##SPC22##
- 5. A process for the preparation of polycarbonates containing s-triazine rings, comprising reacting according to the methods for preparation of polycarbonates, aromatic bis-hydroxy compounds containing s-triazine rings, of the formula 11 ##SPC23##
- in which formula
- Z, r, q, a and X have the same meaning as in claim 1, by themselves or mixed with up to 199 equivalents of a dihydroxy compound of the formula 10,
- HO-X-OH (10)
- in which
- X has the same meaning as in claim 1, with phosgene and/or a bis-chlorocarbonic acid ester of a dihydroxy compound of formula 10 or an oligomeric carbonate, containing chlorocarbonic acid ester end groups, obtainable from a compound of formula 10, the sum of the equivalents of the dihydroxy compound of formula 10, employed as such or as its alkali metal salts or as its bis-chlorocarbonic acid ester or as oligomeric carbonates, containing chlorocarbonic acid ester end groups, prepared from the dihydroxy compound of formula 10, not exceeding 199 equivalents per equivalent of the compound 11 and at least 1.05 chlorine equivalents bonded via -CO- being employed per phenolic OH equivalent.
- 6. The process according to claim 5 wherein the bis-hydroxy compounds 11 are produced by reaction of dihalogeno-s-triazines of the formula 8 with aromatic dihydroxy compounds of the formula 10 in the presence of a proton acceptor, without separate isolation and in the same reaction vessel as the reaction of compounds 11 either by themselves or mixed with an additional compound of formula 10 depending on the choice of the molar ratio of 8 to 10 used in the preparation of compound 11, with phosgene or bis-chlorocarbonic acid esters of the aromatic dihydroxy compounds 10 or oligomeric carbonates, containing chlorocarbonic acid ester end groups, obtainable from the compound of formula 10, the sum of the equivalents of the dihydroxy compound of formula 10, employed as such or as its alkali metal salts or as its bis-chlorocarbonic acid ester or as oligomeric carbonates, containing chlorocarbonic acid ester end groups, prepared from the dihydroxy compound of formula 10, not exceeding 199 equivalents per equivalent of the compound 11, and at least 1.05 chlorine equivalents bonded via -CO- having to be employed per phenolic OH equivalent.
- 7. A process for the preparation of polycarbonates containing bis-triazinyl structural units, comprising reacting according to the methods for preparation of polycarbonates, aromatic bis-hydroxy compounds containing bis-triazinyl segments, of the formula 12 ##SPC24##
- in which formula
- R.sup.5, r.sup.6 and X have the same meaning as in claim 1, by themselves or mixed with up to 199 equivalents of a dihydroxy compound of the formula 10,
- HO-X-OH (10)
- in which
- X has the same meaning as in claim 1, with phosgene or a bis-chlorocarbonic acid ester of a dihydroxy compound 10 or an oligomeric carbonate, containing chlorocarbonic acid ester end groups, obtainable from the compound of formula 10, the sum of the equivalents of the dihydroxy compound of formula 10, employed as such or as its alkali metal salts or as its bis-chlorocarbonic acid ester or as oligomeric carbonates, containing chlorocarbonic acid ester end groups, prepared from the dihydroxy compound of formula 10, not exceeding 199 equivalents per equivalent of the compound 12, and at least 1.05 chlorine equivalents bonded via -CO- having to be employed per phenolic OH equivalent.
- 8. The process according to claim 7 wherein the dihalogeno-bis-triazinyl compounds of formula 9, obtained by reaction of aminodichloro-triazine compounds of formula 15 ##SPC25##
- in which R.sup.5 and R.sup.6 have the same meaning as in claim 1 with 4,4'-diaminostilbene-2,2'-disulphonic acid or its salts, are reacted, without separate isolation and in the same reaction vessel, with aromatic dihydroxy compounds of the formula 10, in the presence of a proton acceptor to a compound of the formula 12, and thereafter, depending on the choice of the molar ratio used in the reaction of 9 with 10, the compound of formula 12 is reacted either by itself or mixed with further compound of formula 10, with phosgene or bis-chlorocarbonic acid esters of the aromatic dihydroxy compounds 10 or oligomeric carbonates containing chlorocarbonic acid ester end groups, obtainable from a compound of formula 10.
- 9. The process according to claim 7, characterized in that the bis-hydroxy compound of formula 12 containing bis-triazinyl segments are obtained by reaction of dichloro-bis-triazinyl compounds of the formula 9 with aromatic dihydroxy compounds of the formula 10 in the presence of a proton acceptor without separate isolation and in the same reaction vessel as the reaction of compounds 12 either by themselves or mixed with additional compound of formula 10 depending on the choice of the molar ratio of 9 to 10 used in the preparation of compound 11, with phosgene or bis-chlorocarbonic acid esters of the aromatic dihydroxy compounds 10 or oligomeric carbonates, containing chlorocarbonic acid ester end groups, obtainable from a compound of formula 10, the sum of the equivalents of the dihydroxy compound of formula 10, employed as such or as its alkali metal salt or as its bis-chlorocarbonic acid ester or as oligomeric carbonate, containing chlorocarbonic acid ester end groups, prepared from the dihydroxy compound of formula 10, not exceeding 199 equivalents per equivalent of the compound of formula 12, and at least 1.05 chlorine equivalents bonded via -CO- having to be employed per phenolic OH equivalents.
- 10. The process of claim 9 wherein 0.01 to 5 mol percent based on the ultimate polycarbonate of the tris-hydroxy compound of formula 14, ##SPC26##
- in which X has the same meaning as in claim 1 are reacted with bis-hydroxy compounds of formula 12.
- 11. The process of claim 6 wherein X is derived from aromatic di-hydroxy compounds of the formula 20, ##SPC27##
- in which R.sup.7, R.sup.8 and Y have the same meaning as in claim 1.
- 12. The process of claim 11 wherein X is derived from 2,2-bis-(4-hydroxyphenyl)propane.
- 13. The process of claim 9 wherein X is derived from aromatic dihydroxy compounds of the formula 20, ##SPC28##
- in which R.sup.7, R.sup.8 and Y have the same meaning as in claim 1.
- 14. The process of claim 13 wherein X is derived from 2,2-bis-(4-hydroxyphenyl)propane.
- 15. The process of claim 5 wherein the compounds of formula 11 are prepared by reacting a dihalogeno s-triazine of formula 8 ##SPC29##
- in which Z, R, Q, a and X have the same meaning as in claim 1 and Hal denotes, F, Cl, Br or I
- with two equivalents of an aromatic dihydroxy compound of formula 10
- HO-X-OH (10)
- in which X has the same meaning as in claim 1,
- in the presence of a proton acceptor.
- 16. The process of claim 7 wherein the compounds of formula 12 are obtained by reaction of dichloro-bis-triazinyl compounds of the formula 9 ##SPC30##
- in which R.sup.5 and R.sup.6 have the same meaning as in claim 1 with two equivalents of an aromatic dihydroxy compound of the formula 10, HO-X-OH
- (10)
- in which X has the same meaning as in claim 1,
- in the presence of a proton acceptor.
- 17. The process of claim 6 wherein 0.01 to 5 mol percent based on the ultimate polycarbonate of the tris-hydroxy compound of the formula 14 ##SPC31##
- in which X has the same meaning as in claim 1 are reacted with the bis-hydroxy compounds of formula 11.
- 18. Polycarbonates containing s-triazine rings, obtained according to the processes of claims 4 and 5.
- 19. The product of the process of claim 6.
- 20. The product of the process of claim 9.
- 21. The product of the process of claim 7.
- 22. The polycarbonates of claim 2 wherein X is derived from aromatic dihydroxy compounds of the formula 20, ##SPC32##
- in which R.sup.7, R.sup.8 and Y have the same meaning as in claim 1.
- 23. The polycarbonates of claim 22 wherein X is derived from 2,2-bis-(4-hydroxyphenyl)propane.
- 24. Process according to claim 5 characterized in that the dihalogeno-s-triazines of the formula 8, obtained by reaction of trihalogeno-s-triazines of the formula 19, ##SPC33##
- in which
- Hal denotes F, Cl, Br and I with compounds of the formula 13
- (Q.sub.a --R) Z-H (13)
- in which
- Z, r, q and a have the same meaning as in claim 1, in the molar ratio of 1:1, are reacted, without separate isolation and in the same reaction vessel, with aromatic dihydroxy compounds of the formula 10 in the presence of a proton acceptor to form a compound of the formula 11, and thereafter, depending on the choice of the molar ratio used in the reaction of 8 with 10, the compound of formula 11 is reacted either by itself or mixed with further compound of formula 10, with phosgene or bis-chlorocarbonic acid esters of the aromatic dihydroxy compounds 10 or oligomeric carbonates, containing chlorocarbonic acid ester end groups, obtainable from a compound of formula 10.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2346935 |
Sep 1973 |
DT |
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Parent Case Info
This application is a continuation-in-part of U.S. application Ser. No. 397,502, filed Sept. 14, 1973, now U.S. Pat. No. 3894991
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
3541049 |
Cleveland |
Nov 1970 |
|
3839447 |
Swiger et al. |
Oct 1974 |
|
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
397502 |
Sep 1973 |
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