Claims
- 1. A block coploymer which comprises at least one block of a poly(heteroaromatic)polymer and at least two blocks of a non-conjugated polymer.
- 2. The block copolymer of claim 1 which is an electrically conductive polymer when the poly(heteroaromatic) blocks are doped.
- 3. The block copolymer of claim 2 which, when doped, exhibits conductivity between about 10−6-103 S/cm.
- 4. The block copolymer of claim 2 which, when doped, exhibits conductivity between about 10−3-102 S/cm.
- 5. The block copolymer of claim 2 which, when doped, exhibits conductivity greater than about 10−3 S/cm.
- 6. The block copolymer of claim 1 which, when doped, is soluble or dispersible in water, an organic solvent or in a mixture thereof at a concentration of at least about 0.1 g/liter.
- 7. The block copolymer of claim 1 which, when doped, is soluble or dispersible in water, an organic solvent or in a mixture thereof at a concentration of at least about 1.0% (weight/volume)
- 8. The block copolymer of claim 1 wherein the conducting poly(heteroaromatic)polymer blocks have molecular weight between about 70 to about 300,000 daltons.
- 9. The block copolymer of claim 1 wherein the non-conducting polymer blocks have molecular weight between 40 to about 1×106 daltons.
- 10. The block copolymer of claim 1 wherein the non-conducting blocks are the same polymer.
- 11. The block copolymer of claim 1 wherein the non-conducting blocks are different polymers.
- 12. The block coploymer of claim 1 wherein the poly(heteroaromatic)polymer block is made by polymerization of one or more heteroaromatic monomers selected from the group consisting of pyrroles, thiophenes, selenophenes tellurophenes, furans, indoles, isoinoles, isothianaphthalenes, pyridines, pyrimidines, pyrazines, triazines, thiazoles, imidazoles, quinolines, isoquinolines, benzimidazoles, thiazoles, triazoles, oxidiazoles, benzopyrrolines, dithienobenzene, thianaphtene, carbazoles, benzothiophenes, isobenzothiophenes, benzofurans, isobenzofurans, isoindolines, isobenzoselenophenes, isobenzotellurophenes, and their substituted derivatives, and mixture thereof.
- 13. The block copolymer of claim 12 wherein the poly(heteroaromatic)polymer is selected from the group consisting of polymers of pyrroles, thiophenes, and their substituted derivatives.
- 14. The block copolymer of claim 12 wherein the poly(heteroaromatic)polymer is made by oxidative copolymerization of 3,4-ethylenedioxythiophene and a non-conducting block that is selected from the group of di-thiophene terminated polymer, di-(3,4-ethylenedioxythiophene)-terminated polymer, di-pyrrole terminated polymer, mono-thiophene terminated polymer, mono-pyrrole terminated polymer, and a mono-(3,4-ethylenedioxythiophene)-terminated polymer.
- 15. The block copolymer of claim 12 wherein the poly(heteroaromatic)polymer is made by oxidative polymerization of pyrrole and a non-conducting block that is selected from the group of di-pyrrole terminated polymer and mono-pyrrole terminated polymer.
- 16. A method for making a conducting polymer which comprises the steps:
modifying a non-conducting block with one or more linkage groups that undergo oxidative polymerization, and copolymerizing the modified non-conducting block with a heteroaromatic monomer under oxidative conditions to form a tri- or a multi-block copolymer.
- 17. The method of claim 16 wherein the heteroaromatic monomer is selected from the group consisting of pyrroles, thiophenes, selenophenes tellurophenes, furans, indoles, isoinoles, isothianaphthalenes, pyridines, pyrimidines, pyrazines, triazines, thiazoles, imidazoles, quinolines, isoquinolines, benzimidazoles, thiazoles, triazoles, oxidiazoles, benzopyrrolines, dithienobenzene, thianaphtene, carbazoles, benzothiophenes, isobenzothiophenes, benzofurans, isobenzofurans, isoindolines, isobenzoselenophenes isobenzotellurophenes, and their substituted derivatives.
- 18. The method of claim 16 wherein the heteroaromatic monomer is a pyrrole, a thiophene or their substituted derivatives.
- 19. The method of claim 16 wherein the copolymerization step is a free radical polymerization.
- 20. A block coploymer which comprises at least one block of a poly(heteroaromatic)polymer and at least two blocks of a non-conjugated polymer wherein the non-conducting blocks contain functional groups that can undergo further polymerization reactions.
- 21. The block copolymer of claim 20 which is a conductive polymer when the poly(heteroaromatic) blocks are doped.
- 22. The block copolymer of claim 20 wherein the polymerizable groups are selected from the group consisting of acrylates, methacrylates, hydroxyl groups, epoxy groups, isocyanates, dienes, vinyl groups, and vinyl ethers.
- 23. The block copolymer of claim 20 wherein where polymerizable groups are selected from acrylates and methacrylates.
- 24. Polymerized or cross-linked materials made by polymerization of the compounds in claim 20
- 25. Polymerized or cross-linked materials of claim 24 made by by free radical polymerization.
- 26. A non-conducting polymer containing one or two terminal groups that undergo oxidative polymerization and are selected from the group of 2-pyrrolyl-, 2-(N-methyl)pyrrolyl-, 2-(3-alkyl)pyrrolyl-, 2-(4-alkyl)pyrrolyl-, 2-(3-alkoxy)pyrrolyl-, 2-(4-alkoxy)pyrrolyl-, 2-(3-phenyl)pyrrolyl-, 2-(4-phenyl)pyrrolyl-, 2-(3,4-ethylenedioxy)pyrrolyl, -2-thienyl-, 2-(3-alkyl)thienyl-, 2-(4-alkyl)thienyl-, 2-(3-alkoxy)thienyl-, 2-(4-alkoxy)thienyl-, 2-(3-phenyl)thienyl-, 2-(4-phenyl)thienyl-, 2-(3,4-alkylenedioxy)thienyl-, 2-(3,4-ethylenedioxy)thienyl-, and 2-isothianaphthalenyl-.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application takes priority under 35 U.S.C. 119(e) to U. S. provisional application serial No. 60/316,607, filed Aug. 31, 2001 which is incorporated by reference in its entirety herein.
REFERENCE TO GOVERNMENT SUPPORT
[0002] This invention was supported by the United States government under grants DMI-9960374 and DMI-0109743 from the National Science Foundation, and grant 1R43NS41686-01 from the National Institute of Health. The United States government may have certain rights in this invention.
Provisional Applications (1)
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Number |
Date |
Country |
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60316607 |
Aug 2001 |
US |