Claims
- 1. A method of forming a conductive article which comprises the steps of:
- (a) forming a conductive material selected from the group consisting of solutions and plasticized compositions comprising one or more solvents selected from the group consisting of solvents having a dielectric constant equal to or greater than about 25 and a dipole moment equal to or greater than about 3.25; one or more dopant solutes selected from the group consisting of oxidizing dopants which form a charge transfer complex with the polyaniline having a conductivity equal to or greater than about 10.sup.-3 ohm.sup.-1 cm.sup.-1 ; and a substituted or unsubstituted polyaniline having a molecular weight of greater than about 15,000 prepared by polymerizing an aniline of the Formula I: ##STR3## wherein: n is an integer from 0 to 4;
- m is an integer from 0 to 5 with proviso that the sum of n and m is 5;
- R is the same or different at each occurrence and is alkyl, alkenyl, alkoxy, cycloalkyl, cycloalkenyl, alkanoyl, alkylthio, aryloxy, alkylthioalkyl, alkylaryl, arylalkyl, alkylsulfinyl, alkoxyalkyl, alksulfonyl, aryl, arylthio, arylsulfinyl, alkoxycarbonyl, arylsulfonyl, carboxylic acid, halogen, cyano, or alkyl substituted with one or more sulfonic acid, carboxylic acid, halogen, nitro, cyano or epoxy moieties; or and two R substituents taken together are an alkylene or alkenylene group completing a 3, 4, 5, 6 or 7 membered aromatic or alicyclic carbon ring, which ring may include one or more divalent heteroatoms of nitrogen, sulfur, sulfinyl, sulfonyl or oxygen; and
- (b) removing the solvent from said material to form said article.
- 2. A method according to claim 1 wherein said polyaniline is of the Formula II to V: ##STR4## wherein: x is an integer equal to or greater than 1;
- y is an integer equal to or greater than 0, with the proviso that the sum of x and y is greater than 8;
- z is greater than about 1;
- n is an integer from 0 to 5 with the proviso that the sum of n and m is 5;
- R is the same or different at each occurrence and is alkyl, alkenyl, alkyoxy, cycloalkyl, cycloalkenyl, alkanoyl, alkylthio, aryloxy, alkylthioalkyl, alkylaryl, arylalkyl, alkylsulfinyl, alkoxyalkyl, alkylsulfonyl, aryl, arylthio, arylsulfinyl, alkoxycarbonyl, arylsulfonyl, carboxylic acid, halogen, cyano, or alkyl substituted with one or more sulfonic acid, carboxylic acid, halogen, nitro, cyano or epoxy moieties; or any two R substituents taken together are an alkylene or alkenylene group completing a 3, 4, 5, 6 or 7 membered aromatic or alicyclic carbon ring, which ring may optionally include one or more divalent heteroatoms of nitrogen, sulfur, sulfinyl, sulfonyl or oxygen.
- 3. A method according to claim 1 wherein m is equal to 5 and n is 0.
- 4. A method according to claim 1 wherein said polyaniline is derived from substituted anilines.
- 5. A method according to claim 2 wherein R is the same or different at each occurrence and is alkyl or alkoxy having from 1 to about 12 carbon atoms, cyano, halogen or alkyl having from 1 to about 12 carbon atoms substituted with carboxylic acid or sulfonic acid substituents.
- 6. A material according to claim 5 wherein R is the same or different at each occurrence and is alkyl or alkoxy having from 1 to about 4 carbon atoms, or substituted alkyl having from 1 to about 4 carbon atoms wherein permissible substituents are alkyl, carboxylic acid and sulfonic acid substituents.
- 7. A method according to claim 6 wherein R is the same or different at each occurrence and is alkyl having from 1 to about 4 carbon atoms.
- 8. A method according to claim 5 wherein n is 1 to 4.
- 9. A method according to claim 8 wherein n is 1 to 3.
- 10. A method according to claim 9 wherein n is 1.
- 11. A method according to claim 1 wherein said dopant is selected from the group consisting of AsF.sub.5, MoOCl.sub.4, MoCl.sub.5, PCl.sub.5, POCl.sub.3, PCl.sub.3, AlCl.sub.3, NOBF.sub.4, NOPF.sub.6, NOSbF.sub.6, NOAsF.sub.6, NOCH.sub.3 CO.sub.2, NO.sub.2 BF.sub.4, NO.sub.2 PF.sub.6, NO.sub.2 AsF.sub.6, NO.sub.2 SbF.sub.6, NO.sub.2 CF.sub.3 SO.sub.3, HClO.sub.4, HNO.sub.3, H.sub.2 SO.sub.4, p-toluenesulfonic acid, benzoyl peroxide, CF.sub.3 SO.sub.3 H, SO.sub.3, Br.sub.2, (FSO.sub.3).sub.2, ZnCl.sub.2, FSO.sub.3 H, Fe(BF.sub.4).sub.3, FeBr.sub.3, Fe(CH.sub.3 SO.sub.3).sub.3, Fe(ClO.sub.4).sub.3, FeCl.sub.3, Fe(OTs).sub.3, Fe(CF.sub.3 SO.sub.3).sub.3, LiClO.sub.4, LiBF.sub.4, LiAsF.sub.6, NaPF.sub.6, BuNClO.sub.4, Bu.sub.4 NOTs, Bu.sub.4 NCF.sub.3 SO.sub.3, LiCF.sub.3 SO.sub.3 and AgOTs.
- 12. A method according to claim 11 wherein said dopant is selected from the group consisting of MoOCl.sub.4, MoCl.sub.5, POCl.sub.3, PCl.sub.5, AlCl.sub.3, FeCl.sub.3, FeBr.sub.3, Fe(OTs).sub.3, Fe(CH.sub.3 SO.sub.3).sub.3, Fe(CF.sub.3 SO.sub.3).sub.3, ZnCl.sub.2, Fe(ClO.sub.4).sub.3, and Fe(BF.sub.4).sub.3.
- 13. A method according to claim 12 wherein said dopant is selected from the group consisting of FeCl.sub.3, FeBr.sub.3, Fe(ClO.sub.4).sub.3, AlCl.sub.3, ZnCl.sub.2, PCl.sub.5, PCl.sub.3, POCl.sub.3, and MoCl.sub.5.
- 14. A method according to claim 13 wherein said dopant is selected from the group consisting of FeCl.sub.3, FeBr.sub.3, ZnCl.sub.2, PCl.sub.3 and MoCl.sub.5.
- 15. A method according to claim 2 wherein z is equal to or greater than about 5.
- 16. A method according to claim 15 wherein z is equal to or greater than about 10.
- 17. A method according to claim 16 wherein z is equal to or greater than about 15.
- 18. A method according to claim 2 wherein x is from 0 to about 8 and y is from 0 to about 8, with the proviso that the sum of x and y is at least about 8.
- 19. A method according to claim 18 wherein x is from about 1 to about 8 and y is from 0 to about 7, with the proviso that the sum of x and y is at least about 8.
- 20. A method according to claim 19 wherein x is from about 2 to about 8 and y is from 0 to about 6 with the proviso that the sum of x and y is at least about 8.
- 21. A method according to claim 1 wherein said solvent is selected from the group consisting of organic solvents having a dielectric constant equal to or greater than about 25 and a dipole moment equal to or greater than about 3.25.
- 22. A method according to claim 21 wherein said dielectric constant is equal to or greater than about 30.
- 23. A method according to claim 22 wherein said dielectric constant is equal to or greater than about 35, and said dipole moment is equal to or greater than about 3.4.
- 24. A method according to claim 1 wherein said solvent is selected from the group consisting of nitroalkanes, nitroaromatics, acetonitrile, proprionitrile benzonitrile, dimethyl formamide, dimethyl sulfoxide and dimethyl acetamide.
- 25. A method according to claim 24 wherein said solvent is selected from the group consisting of nitroalkanes, nitroaromatics, dimethyl formamide, acetonitrile, proprionitrile and benzonitrile.
- 26. A method according to claim 1 wherein said solution contains sufficient dopant to provide a doped polyaniline having a conductivity of at least about 10.sup.-5 ohm.sup.-1 cm.sup.-1.
- 27. A method according to claim 26 wherein said conductivity is at least about 10.sup.-4 ohm.sup.-1 cm.sup.-1.
- 28. A method according to claim 27 wherein said conductivity is at least about 10.sup.-3 ohm.sup.-1 cm.sup.-1.
- 29. A method according to claim 28 wherein said conductivity is at least about 10.sup.-2 ohm.sup.-1 cm.sup.-1.
- 30. A method according to claim 29 wherein said conductivity is at least about 10.sup.-1 ohm.sup.-1 cm.sup.-1.
- 31. A method according to claim 29 wherein said
- conductivity is at least about 10.sup.0 ohm.sup.-1 cm.sup.-1.
- 32. A method according to claim 31 wherein said conductivity is at least about 10.sup.1 ohm.sup.-1 cm.sup.-1.
- 33. A method according to claim 1 wherein said solvent is removed by evaporation.
- 34. A method according to claim 33 wherein said solution is subjected to evaporation on a substrate so as to form a film.
- 35. A method according to claim 33 wherein the solution is subjected to evaporation in a shaped mold so as to form a shaped article.
- 36. A method according to claim 33 wherein said solution is subjected to evaporation in the presence of a substrate insoluble in said solution so as to form a coating on the substrate.
- 37. A method according to claim 1 wherein said solvent is removed by extraction into a non-solvent for the conductive article.
- 38. A method according to claim 1 wherein said material is a solution.
- 39. Blends of conventional polymers with the plasticized forms of the materials in claim 1.
- 40. Method of claim 1 which further comprises mixing the material of claim 1 with a solution or melt of conventional polymers to provide a blend of one or more of said material and said conventional polymers, said blends having conductivities greater than about 10.sup.-6 S/cm.
Parent Case Info
This application is a division of application Ser. No. 002,528, filed 1/12/87 now U.S. Pat. No. 4,983,322.
US Referenced Citations (5)
Divisions (1)
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Number |
Date |
Country |
Parent |
2528 |
Jan 1987 |
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