Claims
- 1. A process for lowering the conductivity of a conductive polymeric material selected from a polypyrrole compound and a polyaniline compound, comprising the steps of contacting a portion of said polymeric material with a solution containing a reducing agent capable of chemically reducing said polymeric material and maintaining contact between said solution and said portion of said polymeric material for a sufficient time to lower the conductivity of said portion.
- 2. A process according to claim 1, further comprising rinsing said portion of said polymeric material with a second solution to substantially terminate chemical reduction of said polymeric material by said reducing agent, wherein said first solution is soluble in said second solution.
- 3. A process according to claim 2, wherein said reducing agent is selected from
- zinc formaldehyde sulfoxylate;
- sodium formaldehyde sulfoxylate;
- thiourea dioxide;
- sodium hydrosulfite;
- sodium borohydride;
- zinc;
- hydrazine;
- and stannous chloride.
- 4. A process according to claim 2, wherein said reducing agent comprises zinc formaldehyde sulfoxylate.
- 5. A process according to claim 2, wherein said reducing agent is selected from zinc formaldehyde sulfoxylate and sodium formaldehyde sulfoxylate and said solution comprises 0.1 gram/liter to 100 gram/liter of said reducing agent, said solution further comprising from 0.05 gram/liter to 100 gram/liter of urea.
- 6. A process according to claim 2, wherein said polymeric material is in the form of a coating on a textile material.
- 7. A process according to claim 6, wherein said textile material is a knitted, woven or non-woven fibrous textile fabric.
- 8. A process according to claim 2, wherein said polymeric material is a polypyrrole compound comprising monomers selected from pyrrole, 3- and 3,4- alkyl or aryl substituted pyrrole, Nalkyl pyrrole and N-aryl pyrrole.
- 9. A process according to claim 2, wherein said polymeric material is polypyrrole.
- 10. A process according to claim 2, wherein said polymeric material is a polyaniline compound comprising monomers selected from aniline and 3- and 3,4- chloro, bromo, alkyl or aryl substituted aniline.
- 11. A process according to claim 2, wherein said polymeric material is polyaniline.
- 12. A process according to claim 1, wherein said solution is an aqueous solution and is heated to a temperature of at least 25.degree. C.
- 13. A process according to claim 12 wherein sadd solution is heated to a temperature of at least 50.degree. C.
- 14. A process according to claim 2, wherein steam is applied to said polymeric material while it is in contact with said solution.
- 15. A process according to claim 13, wherein said reducing agent is present in said solution at a concentration of between 0.1 grams per liter and 100 grams per liter.
- 16. A process according to claim 2, wherein said second solution is aqueous and is applied at a temperature greater than 50.degree. C.
- 17. A process for raising the resistivity of a conductive polymeric material selected from a polypyrrole compound and a polyaniline compound, comprising the steps of contacting a first portion of said polymeric material with a solution containing a reducing agent capable of chemically reducing said polymeric material, contacting a second portion of said polymeric material with said solution, maintaining contact between said solution and said first portion of said polymeric material until the resistivity of said first portion is raised to a level, L.sub.1 ohms per square, and maintaining contact between said solution and said second portion of said polymeric material until the resistivity of said second portion is raised to a level, L.sub.1 ohms per square, whereby L is greater than L.sub.2.
- 18. A process according to claim 17, wherein said first portion of said polymeric material is maintained in contact with said solution for a greater period of time than said second portion is maintained in contact with said solution.
- 19. A process according to claim 17, wherein a greater volume of said solution is contacted per unit of area of said first portion than is contacted per unit of area of said second portion of said polymeric material.
- 20. A process according to claim 17, wherein a concentration of said reducing agent in said solution is greater in said solution contacted with said first portion than in said solution contacted with said second portion of said polymeric material.
- 21. A process according to claim 17, further comprising rinsing said portion of said polymeric material with a second solution to substantially terminate chemical reduction of said polymeric material by said reducing agent, wherein said first solution is soluble in said second solution.
- 22. A process according to claim 21, wherein said reducing agent is selected from
- zinc formaldehyde sulfoxylate;
- sodium formaldehyde sulfoxylate;
- thiourea dioxide;
- sodium hydrosulfite;
- sodium borohydride;
- zinc;
- hydrazine;
- and stannous chloride.
- 23. A process according to claim 21, wherein said reducing agent comprises zinc formaldehyde sulfoxylate.
- 24. A process according to claim 21, wherein said polymeric material is in the form of a coating on textile material.
- 25. A process according to claim 21, wherein said polymeric material is polypyrrole.
- 26. A process according to claim 21, wherein said polymeric material is polyaniline.
- 27. A process according to claim 21, wherein said solution is an aqueous solution and is heated to a temperature of at least 50.degree. C.
- 28. A process according to claim 21, wherein steam is applied to said polymeric material while it is in contact with said solution.
- 29. A process according to claim 28, wherein a greater amount of steam is applied to said first portion than said second portion of said polymeric material.
- 30. A process for raising the resistivity of a conductive polymeric material selected from a polypropylene compound and a polyaniline compound, comprising the steps of contacting a first portion of said polymeric material with a first solution containing a first reducing agent capable of chemically reducing said polymeric material, contact a second portion of said polymeric material with a second solution containing a second reducing agent capable of chemically reducing said polymeric material, maintaining contact between said first solution and said first portion of said polymeric material until the resistivity of said first portion is raised to a level, L.sub.1 ohms per square, and maintaining contact between said second solution and said second portion of said polymeric material until the resistivity of said second portion is raised to a level, L.sub.2 ohms per square, whereby L.sub.1 is greater than L.sub.2.
- 31. A process according to claim 30, further comprising rinsing said first and second portions of said polymeric material with a third solution to substantially terminate chemical reduction of said polymeric material by said first and second reducing agent, wherein said first and second solutions are soluble in said third solution.
- 32. A process according to claim 31, wherein said first and second reducing agents is selected from
- zinc formaldehyde sulfoxylate;
- sodium formaldehyde sulfoxylate;
- thiourea dioxide;
- sodium hydrosulfite;
- sodium borohydride;
- zinc;
- hydrazine;
- and stannous chloride.
- 33. A process according to claim 32, wherein said polyminc material is in the form of a coating on a textile material.
- 34. A process according to claim 33, wherein said polymeric material is a polypyrrole compound comprising monomers selected from pyrrole, 3- and 3,4- alkyl or aryl substituted pyrrole, N-alkyl pyrrole and N-aryl pyrrole.
- 35. A process according to claim 34, wherein said first and second solutions are aqueous and are heated to a temperature of at least 50.degree. C.
- 36. A process for introducing a resistivity gradient in a substrate coated with a polymeric material selected from a polypyrrole compound and a polyaniline compound, comprising the steps of contacting a first portion of said substrate with a solution containing a reducing agent capable of chemically reducing said polymeric material, said reducing agent selected from zinc formaldehyde sulfoxylate; sodium formaldehyde sulfoxylate; thiourea dioxide; sodium hydrosulfite; sodium borohydride; zinc; hydrazine; and stannous chloride, contacting a second portion of said substrate with said solution, maintaining contact between said solution and said first portion of said polymeric material at a temperature of between 25.degree. C and 100.degree. C. until the resistivity of said first portion is raised to a level, L.sub.1 ohms per square, and maintaining contact between said solution and said second portion of said polymeric material at a temperature of between 25.degree. C. and 100.degree. C. until the resistivity of said second portion is raised to a level L.sub.2 ohms per square, whereby L.sub.1 is greater than L.sub.2.
- 37. A process according to claim 36, wherein said substrate is a knitted, woven or non-woven fibrous textile fabric.
- 38. A process according to claim 37, wherein said reducing agent is selected from zinc formaldehyde sulfoxylate and sodium formaldehyde sulfoxylate, said solution containing 0.1 gram/liter to 100 gram/liter of said reducing agent, said solution further comprising from 0.05 gram/liter to 100 gram/liter of urea.
- 39. A process according to claim 37, wherein said textile material is submerged in a bath containing said solution and wherein said first portion is submerged for a longer period of time than said second portion.
- 40. A process according to claim 37, wherein said solution is sprayed onto said first and second portions of said substrate.
- 41. A process according to claim 36, wherein said reducing agent is zinc formaldehyde sulfoxylate.
- 42. A process according to claim 36, wherein said polypyrrole compound is a polypyrrole compound comprising monomers selected from pyrrole, 3- and 3,4- alkyl or aryl substituted pyrrole, N-alkyl pyrrole and N-aryl pyrrole.
- 43. A process according to claim 41, wherein said polymeric compound is polypyrrole.
- 44. A process according to claim 36, further comprising rinsing said first and second portion of said substrate with a second solution to substantially terminate chemical reduction of said polymeric material by said reducing agent, wherein said first solution is soluble in said second solution.
- 45. A process according to claim 43, further comprising rinsing said first and second portion of said substrate with a second solution at a temperature of at least 50.degree. C. to substantially terminate chemical reduction of said polymeric material by said reducing agent, wherein said first solution is soluble in said second solution.
- 46. A process according to claim 41, wherein said polymeric material is polyaniline compound comprising monomers selected from aniline and 3- and 3,4- chloro, bromo, alkyl or aryl substituted aniline.
- 47. The process for raising the resistivity of a conductive polymer material, comprising the steps of contacting a first portion of said polymeric material with a solution containing a reducing agent capable of chemically reducing said polymeric material, contacting a second portion of said polymeric material with said solution, maintaining contact between said solution and said first portion of said polymeric material until the resistivity of said first portion is raised to a level, L ohms per square, and maintaining contact between said solution and said second portion of said polymeric material until the resistivity of said second portion is raised to a level, L.sub.2 ohms per square, whereby L.sub.1 is greater than L.sub.2.
- 48. The process according to claim 47 wherein said polymeric material is selected from a polypyrrole compound, a polyaniline compound, a polyacetylene compound and a polythiophthene compound.
- 49. The process according to claim 48 wherein said reducing agent is selected from zinc formaldehyde sulfoxylate;
- sodium formaldehyde sulfoxylate;
- thiourea dioxide;
- sodium hydrosulfite;
- sodium borohydride;
- zinc;
- hydrazine;
- and stannous chloride.
- 50. The process according to claim 49 wherein said solution is aqueous and said solution is heated to a temperature of between 25.degree. C. and 100.degree. C. while said solution is in contact with said polymeric material.
- 51. The product of the process of claim 17.
- 52. The product according to claim 51 wherein said polymeric material is in the form of a coating on a textile material.
- 53. The product according to claim 52 wherein said polymeric material is polypyrrole.
- 54. The product according to claim 53 wherein said reducing agent is selected from zinc formaldehyde sulfoxylate;
- sodium formaldehyde sulfoxylate;
- thiourea dioxide;
- sodium hydrosulfite;
- sodium borohydride;
- zinc;
- hydrazine;
- and stannous chloride.
- 55. A textile material comprising first and second portions coated with a film of a conductive polymer selected from a polypyrrole compound and a polyaniline compound, said film being of equal and uniform thickness on each of said first and second portions, wherein the resistivity of said first portion is greater than a resistivity of said second portion.
- 56. A textile material according to claim 55 wherein said film of polymer on said second portion has been chemically reduced.
- 57. A textile material according to claim 56 wherein said polymer is polypyrrole.
- 58. A textile material according to claim 56 wherein said film of polymer on said second portion has been chemically reduced by a reducing agent selected from zinc formaldehyde sulfoxylate;
- sodium formaldehyde sulfoxylate;
- thiourea dioxide;
- sodium hydrosulfite;
- sodium borohydride;
- zinc;
- hydrazine;
- and stannous chloride,
RELATED APPLICATIONS
This application is a continuation-in-part of U.S. patent application Ser. No. 07/448,035, titled "FABRIC HAVING NON-UNIFORM ELECTRICAL CONDUCTIVITY", filed Dec. 8, 1989, specific reference being made herein to obtain the benefit of its earlier filing date.
US Referenced Citations (4)
Continuation in Parts (1)
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Number |
Date |
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448035 |
Dec 1989 |
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