Claims
- 1. A method of making a conductive pattern on a support comprising the steps of:providing a material for making a conductive pattern, said material comprising a support and a conductive element, said conductive element containing a polyanion and an intrinsically conductive polymer, wherein one surface of said conductive element is an outermost surface of said material, to other surface of said conductive element is contiguous with a patterned surface, said patterned surface consisting of at least two types of surface element, and those parts of said conductive element contiguous with one type of said surface elements are capable of being at least partially removed by a developer; processing said material with a developer thereby at least partially removing said parts of said conductive element contiguous with one type of said surface elements; and optionally enhancing the electroconductivity of said material.
- 2. Process according to claim 1, wherein said conductive pattern is an electroconductive pattern.
- 3. Process according to claim 1, wherein said patterned surface is planar.
- 4. Process according to claim 3, wherein said planar patterned surface is the surface of said support or a patternwise treated continuous layer.
- 5. Process according to claim 4, wherein said patternwise treatment is carried out with a corona discharge or a glow discharge.
- 6. Process according to claim 1, wherein said patterned surface is non-planar.
- 7. Process according to claim 6, wherein said non-planar patterned surface consists of a non-continuous layer provided on a continuous layer or on said support.
- 8. Process according to claim 1, wherein said conductive element further contains a multidiazonium salt, a resin comprising a diazonium salt or both a multidiazonium salt and a resin comprising a diazonium salt.
- 9. Process according to claim 1, wherein said conductive element further contains a bis(aryldiazosulphonate) salt, which is capable of reducing the removability of the outermost layer if said outermost layer is exposed, according to formula (II):MO3S—N═N—Ar—L—Ar—N═N—SO3M (II) where Ar is a substituted or unsubstituted aryl group, L is a divalent linking group, and M is a cation.
- 10. Process according to claim 1, wherein said conductive element further contains contains a polymer or copolymer of an aryldiazosulphonate represented by formula (III): wherein R0, R1 and R2 each independently represent hydrogen, an alkyl group, a nitrile or a halogen, L represents a divalent linking group, n represents 0 or 1, A represents an aryl group and M represents a cation.
- 11. Process according to claim 1, wherein said intrinsically conductive polymer is a polymer or copolymer of a substituted or unsubstituted thiophene.
- 12. Process according to claim 11, wherein said polymer of a substituted or unsubstituted thiophene is represented by formula (I): in which n is larger than 1 and each of R1 and R2 independently represent hydrogen or an optionally substituted C1-4 alkyl group or together represent an optionally substituted C1-4 alkylene group or an optionally substituted cyctoalkylene group, preferably an ethylene group, an optionally alkyl-substituted methylene group, an optionally C1-12 alkyl- or phenyl-substituted ethylene group, a 1,3-propylene group or a 1,2-cyclohexylene group.
- 13. Process according to claim 1, wherein said polyanion is poly(styrenesulphonate).
Priority Claims (2)
| Number |
Date |
Country |
Kind |
| PCT/EP01/07083 |
Jun 2001 |
WO |
|
| 01000731 |
Dec 2001 |
EP |
|
Parent Case Info
This application is a division of application Ser. No. 10/175,989, filed Jun. 20, 2002, which claims the benefit of U.S. Provisional Application No. 60/350,731 filed Jan. 22, 2002, which is herein incorporated by reference.
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Provisional Applications (1)
|
Number |
Date |
Country |
|
60/350731 |
Jan 2002 |
US |