Claims
- 1. Polythiophenes of the formula
- 2. Polythiophenes in accordance with claim 1 and which polythiophenes are represented by
- 3. Polythiophenes in accordance with claim 1 and of the formulas
- 4. Polythiophenes in accordance with claim 1 and of the formulas
- 5. Polythiophenes in accordance with claim 1 wherein m is 1.
- 6. Polythiophenes in accordance with claim 1 wherein R is alkoxyalkyl, siloxy substituted alkyl, a perhaloalkyl, or a polyether.
- 7. Polythiophenes in accordance with claim 1 wherein A is an arylene.
- 8. Polythiophenes in accordance with claim 7 wherein said arylene possesses from about 6 to about 40 carbon atoms.
- 9. Polythiophenes in accordance with claim 7 wherein said arylene is phenylene.
- 10. Polythiophenes in accordance with claim 7 wherein said arylene is biphenylene, phenylthrenylene, fluorenylene, polymethylene, dioxyarylene, or 9,10-dihydrophenanthrenylene.
- 11. Polythiophenes in accordance with claim 1 wherein m is 1 or 2.
- 12. Polythiophenes in accordance with claim 1 wherein x, y, and z represent the number of segments of from 1 to about 5 for x and y, and z is zero (0) or 1.
- 13. Polythiophenes in accordance with claim 1 wherein n is from about 5 to about 5,000; the number average molecular weight (Mn) Of the polythiophene is from about 2,000 to about 100,000; the weight average molecular weight (Mw) is from about 4,000 to over 500,000, both Mw and Mn being measured by gel permeation chromatography using polystyrene standards.
- 14. Polythiophenes in accordance with claim 1 wherein R is alkyl containing from 1 to about 20 carbon atoms; wherein n is from about 10 to about 1,000; the Mn is from about 4,000 to about 50,000; and the Mw is from about 5,000 to about 100,000.
- 15. Polythiophenes in accordance with claim 1 wherein the alkyl side chain R contains from about 6 to about 12 carbon atoms.
- 16. Polythiophenes in accordance with claim 1 wherein the alkyl side chain R is butyl, pentyl, hexyl, heptyl, octyl, nonyl, decyl, undecyl, or dodecyl.
- 17. Polythiophenes in accordance with claim 1 wherein the side chain R is a perfluoroalkyl of about 2 to about 15 carbon atoms.
- 18. Polythiophenes in accordance with claim 1 wherein the side chain R is siloxyalkyl of trimethylsiloxyalkyl or triethylsiloxyalkyl, and wherein alkyl optionally contains from about 4 to about 10 carbons, and which alkyl is butyl, pentyl, hexyl, heptyl, or octyl.
- 19. Polythiophenes in accordance with claim 1 wherein the divalent linkage A is an arylene with from about 6 to about 40 carbon atoms.
- 20. Polythiophenes in accordance with claim 19 wherein the divalent linkage A is selected from the group consisting of phenylene, biphenylene, phenanthrenylene, 9,10-dihydrophenanthrenylene, fluorenylene, methylene, polymethylene, dioxyalkylene, dioxyarylene, and an oligoethylene oxide.
- 21. Polythiophenes in accordance with claim 1 and represented by
- 22. Polythiophenes in accordance with claim 21 wherein R is alkyl containing from about 1 to about 20 carbon atoms; or wherein R is alkyl containing from about 6 to about 12 carbon atoms.
- 23. Polythiophenes in accordance with claim 21 wherein R is butyl, pentyl, hexyl, heptyl, octyl, nonyl, decyl, undecyl, or dodecyl.
- 24. Polythiophenes in accordance with claim 21 wherein b and d are from about 1 to about 5.
- 25. Polythiophenes in accordance with claim 21 wherein b and d are from about 1 to about 3.
- 26. Polythiophenes in accordance with claim 21 wherein a is from about 0 to about 5, and c is about 1 to about 5, or wherein a is about 0 to about 3, and c is about 1 to about 3.
- 27. Polythiophenes in accordance with claim 1 wherein said polythiophene is selected from the group consisting of polythiophenes (II-a) through (II-o), and wherein n is from about 100 to about 4,000
- 28. A process for the preparation of polythiophenes comprising reacting about 1 molar equivalent of a suitable monomer in an organic solvent with about 1 to about 5 molar equivalents of a ferric chloride at a temperature of from about 25° C. to about 80° C., and which polythiophenes are of the formula
- 29. A process in accordance with claim 28 which comprises reacting about 1 molar equivalent of monomer (IIIb) of the formula and which polythiophene is of the formula
- 30. A process in accordance with claim 28 wherein said R side chain is alkyl, substituted alkyl, or perhaloalkyl.
- 31. A process in accordance with claim 28 wherein alkyl contains from 1 to about 25 carbon atoms or from 4 to about 15 carbon atoms; wherein substituted alkyl is alkoxy alkyl, or siloxy substituted alkyl; and said perfluoro is a polyether.
- 32. A process in accordance with claim 28 wherein the relative positions of Rm substituted thienylene, unsubstituted thienylene, and A in the monomer segment are dissimilar than schematically presented in (I).
- 33. Polythiophenes in accordance with claim 2 wherein arylene is phenylene, biphenylene, phenanthrenylene, 9,10-dihydrophenanthrenylene, fluorenylene, polymethylene, or dioxyalkylene, dioxyarylene.
COPENDING APPLICATIONS
[0001] Illustrated in copending applications U.S. Ser. No. (______—D/A1333), U.S. Ser. No. (______—D/A1334), U.S. Ser. No. (______—D/A1332), U.S. Ser. No. (______—D/A1657), U.S. Ser. No. (______—D/A1658), the disclosures of which are totally incorporated herein by reference, and filed concurrently herewith, are polythiophenes and devices thereof. The appropriate components, processes thereof and uses thereof illustrated in these copending applications may be selected for the present invention in embodiments thereof.