Claims
- 1. Polymers of polyols and ketene acetals having a functionality of two or more.
- 2. Polymers according to claim 1 wherein the polyol and/or the ketene acetal has a functionality greater than two and the resulting polymer is crosslinked.
- 3. Polymers according to claim 2 wherein at least some of the polyol reactant has a functionality greater than two.
- 4. Polymers according to claim 3 wherein the polyol reactant is a mixture of a diol and a polyol having a functionality greater than two.
- 5. Polymers according to claim 2 wherein the ketene acetal has a functionality greater than two.
- 6. Linear polymers according to claim 1 wherein both the polyol and the ketene acetal have a functionality of two.
- 7. Polymers having the repeating mer unit: ##STR63## wherein n is an integer substantially greater than 10; wherein R.sub.1 and R.sub.2 are hydrogen or the same or different essentially hydrocarbon groups and may be separate groups or may form parts of a cyclic group; R is a quadrivalent organic grouping; R.sub.3 and R.sub.4 are hydrogen or the same or different essentially hydrocarbon groups and may be separate groups or may form parts of a cyclic group; R.sub.5 is an essentially hydrocarbon group which is the residue of a polyol R.sub.5 (OH).sub.a wherein a is an integer equal to two or more, such polyol being a single molecular species or a mixture of molecular species; and wherein such linear chain may be crosslinked with other similar chains.
- 8. Polymers according to claim 7 wherein R is a single quadrivalent radical attached to all of the interior acetal-forming oxygen atoms.
- 9. Polymers according to claim 8 wherein R is a spiro structure.
- 10. Polymers according to claim 8 wherein R is an open chain aliphatic group.
- 11. Polymers according to claim 8 wherein R contains a carbocyclic group.
- 12. Polymers according to claim 7 wherein R.sub.5 in at least some of the mer units is alkylene or contains a carbocyclic group.
- 13. Polymers according to claim 7 wherein R.sub.5 in at least some of the mer units is derived from a polyol of greater functionality than three and the polymers are crosslinked.
- 14. Polymers according to claim 13 wherein some of the R.sub.5 's are derived from diols and others are derived from polyols of greater functionality.
- 15. Polymers having the repeating mer unit ##STR64## wherein n is an integer substantially greater than 10; wherein R.sub.1, R.sub.2, R.sub.3 and R.sub.4 are the same or different essentially hydrocarbon groups, R.sub.1 and R.sub.2 being separate groups or parts of a cyclic group and R.sub.3 and R.sub.4 being separate groups or parts of a cyclic group; R.sub.5 is an essentially hydrocarbon group which is the residue of a polyol R.sub.5 (OH).sub.a wherein a is an integer equal to two or more, such polyol being a single molecular species or a mixture of molecular species; R.sub.6 is a valence bond or an essentially hydrocarbon group; R.sub.7 and R.sub.8 are hydrogen or essentially hydrocarbon groups which may be separate groups or may form parts of a cyclic group; and wherein such linear chains may be crosslinked to similar chains.
- 16. Polymers according to claim 15 wherein the group ##STR65## is selected from the class consisting of alkylene and groups containing a carbocylic ring.
- 17. Polymers according to claim 15 wherein R.sub.5 in at least some of the mer units is alkylene or contains a carbocyclic group.
- 18. Polymers according to claim 15 wherein R.sub.5 in at least some of the mer units is derived from a polyol having a greater functionality than three and the polymers are crosslinked.
- 19. Polymers according to claim 18 wherein some of the R.sub.5 's are derived from diols and others are derived from polyols of greater functionality.
- 20. A method of producing poly (ortho esters) which comprises polymerizing a mixture of a polyol and a ketene acetal having a functionality greater than one.
- 21. The method of claim 20 wherein the polymerization is carried out at a temperature not greatly in excess of the temperature to which the reaction mixture rises by reason of the heat of reaction.
- 22. The method of claim 20 wherein the reaction is carried out in the substantial absence of a solvent.
- 23. The method of claim 20 wherein a beneficial agent is incorporated in the mixture of monomers before they are polymerized.
- 24. The method of claim 23 wherein at least one of the monomers has a functionality greater than two and the resulting polymer is crosslinked.
- 25. Polymers of claim 1 in admixture with biologically active agents.
- 26. Polymers of claim 7 in admixture with biologically active agents.
- 27. Polymers of claim 15 in admixture with biologically active agents.
- 28. Polymers of claim 25 in shaped form fitted for end use.
- 29. Polymers of claim 26 in shaped form fitted for end use.
- 30. Polymers of claim 27 in shaped form fitted for end use.
Government Interests
The invention disclosure described herein was made in the course of or under National Institutes of Health Contract No. 1-HD-7-2826 with the U.S. Department of Health, Education and Welfare.
US Referenced Citations (6)