IP Library › Granted Patent US 7,169,499
Granted Patent B2
US 7,169,499 · App. 10/449,230 · Granted Jan 30, 2007

Sulfonated polyphosphazenes, uses thereof, and methods for preparing same

Assignee: Parallel Solutions, Inc.
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Quick Facts
Patent No.
US 7,169,499
App. No.
10/449,230
Granted
Jan 30, 2007
Kind
B2
Abstract

Polyphosphazene polymers having at least one sulfonated pendent group, and no more than five different sulfonated pendent groups, repeated along the polymer chain, wherein at least one the repeated sulfonated pendent groups links at least one SO 3 − group to the polymer chain through a nitrogen-free linkage containing at least three carbon atoms, are disclosed, along with methods of making same, and uses therefor.

Claims (23)

1. A polyphosphazene polymer, said polyphosphazene polymer including a singular sulfonated pendent group, said singular sulfonated pendent group being present along the length of the polymer chain, and wherein said singular sulfonated pendent group links at least one SO 3 − group to said polymer chain through a nitrogen-free linkage containing at least three carbon atoms.

2. A method of preparing a polyphosphazene polymer that contains at least one sulfonated pendent group and no more than five different sulfonated pendent groups, said method comprising reacting at least one sulfonated modifying reagent in the form of a quaternary ammonium salt with a polyphosphazene substrate.

3. A membrane for use in a fuel cell, said membrane comprising the polyphosphazene polymer of claim 1 .

4. A membrane for use in a fuel cell, said membrane comprising the polyphosphazene polymer of claim 1 , wherein said polyphosphazene polymer has a molecular weight of about 20,000 to 1,000,000.

5. A membrane for use in a fuel cell, said membrane comprising the polyphosphazene polymer prepared by the method of claim 2 .

6. A membrane for use in a fuel cell, said membrane comprising the polyphosphazene polymer prepared by the method of claim 2 , wherein said polyphosphazene polymer has a molecular weight of about 20,000 to 1,000,000.

7. Articles of manufacture selected from the group comprising solid polyelectrolytes for batteries, multifunctional dopants for conductive polymers, surfactants, fabric/textile protectors, and membranes, comprising the polyphosphazene polymer of claim 1 .

8. Articles of manufacture selected from the group comprising solid polyelectrolytes for batteries, multifunctional dopants for conductive polymers, surfactants, fabric/textile protectors, and membranes, comprising a polyphosphazene polymer prepared by the method of claim 2 .

9. A polyphosphazene copolymer, said polyphosphazene copolymer including a singular sulfonated pendent group said singular sulfonated pendent group being present along the copolymer chain and wherein said singular sulfonated pendent group links at least one SO 3 − group to said copolymer chain through a nitrogen-free linkage containing at least three carbon atoms.

10. The polyphosphazene copolymer of claim 9 wherein the singular sulfonated pendent group is p-oxyphenylsulfonic.

11. The polyphosphazene copolymer of claim 9 further including a singular non-ionic pendent group, said singular non-ionic pendent group being present along the copolymer chain.

12. The polyphosphazene copolymer of claim 9 further including several different non-ionic pendent groups, said several different non-ionic pendent groups being present along the copolymer chain.

13. The polyphosphazene copolymer of claim 11 further including a singular pendent group suitable for chemical cross-linking, said singular pendent group suitable for chemical cross-linking being present along the copolymer chain.

14. A method of preparing a polyphosphazene copolymer that contains a singular sulfonated pendent group, said method comprising reacting a single sulfonated modifying reagent in the form of a quaternary ammonium salt with a polyphosphazene substrate.

15. A membrane for use in a fuel cell, said membrane comprising the polyphosphazene copolymer of claim 9 .

16. A membrane for use in a fuel cell, said membrane comprising the polyphosphazene copolymer of claim 9 , wherein said polyphosphazene copolymer has a molecular weight of about 20,000 to 1,000,000.

17. A membrane for use in a fuel cell, said membrane comprising the polyphosphazene copolymer prepared by the method of claim 14 .

18. The membrane of claim 17 , wherein said polyphosphazene copolymer has a molecular weight of about 20,000 to 1,000,000.

19. Articles of manufacture selected from the group comprising solid polyelectrolytes for batteries, multifunctional dopants for conductive polymers, surfactants, fabric/textile protectors, and membranes, comprising the polyphosphazene copolymer of claim 9 .

20. Articles of manufacture selected from the group comprising solid polyelectrolytes for batteries, multifunctional dopants for conductive polymers, surfactants, fabric/textile protectors, and membranes, comprising a polyphosphazene copolymer prepared by the method of claim 14 .

21. The method of claim 2 , wherein said sulfonated modifying reagent in the form of a quaternary ammonium salt is a member selected from the group consisting of:

22. The polyphosphazene of claim 9 , wherein said singular sulfonated pendent group is a member selected from the group consisting of:

23. The method of claim 14 , wherein said single sulfonated modifying reagent in the form of a quaternary ammonium salt is a member selected form the group consisting of:

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 21, 2016
From: PARALLEL SOLUTIONS, INC.
To: INNOVO BIOPOLYMERS, LLC
Reel/Frame 039212/0814 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 30, 2003
From: ANDRIANOV, ALEXANDER; CHEN, JIANGPING; SARGENT, JONATHAN; MARIN, ALEXANDER
To: PARALLEL SOLUTIONS, INC.
Reel/Frame 014325/0830 →
Continuity (2)
Provisional Application 6038498100 · Jun 3, 2002
Related Publication 20040033406A1 · Feb 19, 2004