Claims
- 1. A process for preparing a crosslinked polymeric ammonium salt comprising ammonium nitrogen atoms linked by segments to other ammonium nitrogen atoms, wherein:
- about 25% or more of the segments which link ammonium nitrogen atoms are group Y wherein each Y is independently
- --(CR.sup.1 R.sup.2).sub.b --
- wherein b is an integer of 7 to about 20, and each R.sup.1 and R.sup.2 is independently alkyl or hydrogen;
- the remainder of the nitrogen atoms are linked by segments Z wherein each Z is independently a hydrocarbylene radical containing 2 to 50 carbon atoms, said hydrocarbylene radical optionally containing one or more hydroxyl, ether, amino, thioether, keto, or silyl groups or heterocyclic rings;
- wherein about 25% or more of the ammonium nitrogen atoms are secondary ammonium nitrogen atoms;
- wherein said crosslinked polymeric ammonium salt is insoluble in water; and with the proviso that at least some of said ammonium nitrogen atoms are part of a crosslinked network,
- said process comprising:
- reacting in a suitable solvent a bifunctional organic compound of the formula X--Y--X or X--Z--X, where X is a leaving group suitable for amine alkylations, and a diamine, of the formula H.sub.2 N--Y--NH.sub.2 or H.sub.2 N--Z--NH.sub.2, to form a gel,
- wherein the gel is formed in the presence of a template selected from the group consisting of cholesterol esters, cholesteryl chloride, sodium cholate, and methyl cholate.
- 2. A process of claim 1 wherein the bifunctional organic compound and the diamine are present in the reaction in a mole ratio of 0.9 to 1.4.
- 3. A process of claim 1 wherein the template is present in an amount of 5 to 500% by weight relative to the total reaction weight in the absence of template.
- 4. A method of claim 1 wherein the bifunctional organic compound is selected from: 1,10-dibromodecane, 1,12-dibromododecane, 1,8-dibromooctane, 1,18-dibromooctadecane, 1,9-dibromononane, 1,7-dibromoheptane, 1,8-diiodooctane, 1,8-dibromo-3-ethyloctane, and 1,9-dibromodecane, 1,10-dichlorodecane, 1,12-dichlorododecane, 1,8-dichlorooctane, 1,18-dichlorooctadecane, 1,9-dichlorononane, 1,7-dichloroheptane, 1,8-dichlorooctane, 1,8-dichloro-3-ethyloctane, and 1,9-dichlorodecane, 1,9-diepoxydecane, 1,11-diepoxydodecane, 1,7-diepoxyoctane, 1,17-diepoxyoctadecane, 1,8-diepoxynonane, 1,6-diepoxyheptane, 1,7-diepoxyoctane, and 1,7-diepoxy-3-ethyloctane, 1,9-diaziridinodecane, 1,11-diaziridinododecane, 1,7-diaziridinooctane, 1,17-diaziridinooctadecane, 1,8-diaziridinononane, 1,6-diaziridinoheptane, 1,7-diaziridinooctane, and 1,7-diaziridino-3-ethyloctane.
- 5. A method of claim 1 wherein the diamine is selected from: ethylene diamine, 1,6-diaminohexane, 1,12-diaminododecane, 2-methyl-1,5-diaminopentane, 1,4-bis(aminomethyl)cyclohexane, 1,3-diaminopentane, diethylenetriamine, 1,4-bis(3-aminopropyl)piperazine, 1,4-cyclohexanediamine, 5-amino-1-aminomethyl-1,3,3-trimethylcyclohexane, 1,3-propanediamine, 1,4-butanediamine, 1,5-pentanediamine, 1,7-heptanediamine, 1,8-diaminooctane, 1,9-diaminononane, 1,10-diaminodecane, 1,11-diaminoundecane, 2-hydroxy-1,3-propanediamine, and 4,4'-methylene-bis(cyclohexylamine).
- 6. A method of claim 1 wherein the bifunctional organic compound is selected from: 1,10-dibromodecane, 1,12-dibromododecane, 1,8-dibromooctane, 1,18-dibromooctadecane, 1,9-dibromononane, 1,7-dibromoheptane, 1,8-diiodooctane, 1,8-dibromo-3-ethyloctane, and 1,9-dibromodecane, 1,10-dichlorodecane, 1,12-dichlorododecane, 1,8-dichlorooctane, 1,18-dichlorooctadecane, 1,9-dichlorononane, 1,7-dichloroheptane, 1,8-dichlorooctane, 1,8-dichloro-3-ethyloctane, and 1,9-dichlorodecane, 1,9-diepoxydecane, 1,11-diepoxydodecane, 1,7-diepoxyoctane, 1,17-diepoxyoctadecane, 1,8-diepoxynonane, 1,6-diepoxyheptane, 1,7-diepoxyoctane, and 1,7-diepoxy3-ethyloctane.
- 7. A method of claim 1 wherein the bifunctional organic compound is selected from: 1,10-dibromodecane, 1,12-dibromododecane, 1,8-dibromooctane, 1,18-dibromooctadecane, 1,9-dibromononane, 1,7-dibromoheptane, 1,8-diiodooctane, 1,8-dibromo-3-ethyloctane, and 1,9-dibromodecane, 1,9-diepoxydecane, 1,11-diepoxydodecane, 1,7-diepoxyoctane, 1,17-diepoxyoctadecane, 1,8-diepoxynonane, 1,6-diepoxyheptane, 1,7-diepoxyoctane, and 1,7-diepoxy-3-ethyloctane.
- 8. Process of claim 7 wherein the template is selected from the group consisting of cholesterol esters, cholesteryl chloride, sodium cholate and methyl cholate.
CROSS-REFERENCE TO EARLIER FILED APPLICATIONS
This is a division of application Ser. No. 08/202,395 filed Feb. 24, 1994, U.S. Pat. No. 5,556,619 which is a continuation-in-part of Ser. No. 08/182,954, filed Jan. 18, 1994, which is a continuation-in-part of U.S. patent application Ser. No. PCT/US93/07649, filed Aug. 18, 1993, which is a continuation-in-part of U.S. patent application Ser. No. 07/932,449, filed Aug. 20, 1992, abandoned. The disclosure of these earlier filed applications is hereby incorporated herein by reference.
US Referenced Citations (23)
Foreign Referenced Citations (1)
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0081291 |
Jun 1983 |
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Divisions (1)
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202395 |
Feb 1994 |
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Continuation in Parts (2)
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932449 |
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