Claims
- 1. A carbon nanotube wiring comprising:
a substrate; and a patterned wiring line or electrode disposed on the substrate and comprising carbon nanotubes.
- 2. The carbon nanotube wiring of claim 1, wherein the wiring line or the electrode further comprises a binder or a photoresist.
- 3. The carbon nanotube wiring of claim 1, wherein the carbon nanotubes have an outer diameter of 3.5 nm or smaller.
- 4. The carbon nanotube wiring of claim 1, wherein the wiring line or the electrode further comprises metal fillers.
- 5. The carbon nanotube wiring of claim 4, wherein the metal fillers comprises silver, gold, copper or combinations thereof.
- 6. The carbon nanotube wiring of claim 1, wherein the wiring line or the electrode has a surface resistance in a range between 102 and 104 ohms/square.
- 7. The carbon nanotube wiring of claim 1, wherein the wiring line or the electrode has a volume resistance in a range between 10−2 and 100 ohms-cm.
- 8. The carbon nanotube wiring of claim 1, wherein the wiring line or the electrode has a light transmittance of 80% or higher.
- 9. The carbon nanotube wiring of claim 1, wherein the wiring line or the electrode has a carbon nanotube concentration between 5% and 50% by volume.
- 10. The carbon nanotube wiring of claim 1, further comprising an insulating layer disposed on the wiring line or the electrode.
- 11. The carbon nanotube wiring of claim 1, wherein the substrate is a glass substrate, a polymer substrate, a silicon wafer, a prepreg or combinations thereof.
- 12. A method for patterning a carbon nanotube coating, comprising:
providing a solution of carbon nanotubes; applying the solution to a substrate to form a film of consolidated carbon nanotubes on the substrate; impregnating the carbon nanotube film selectively with a binder; and removing at least a part of the carbon nanotube film that is not impregnated with the binder from the substrate.
- 13. The method for patterning the carbon nanotube coating of claim 12, wherein providing the solution of carbon nanotubes comprises purifying the carbon nanotubes.
- 14. The method for patterning the carbon nanotube coating of claim 12, wherein the providing of the solution of carbon nanotubes comprises dispersing the carbon nanotubes in a solution of water and an alcohol.
- 15. The method for patterning the carbon nanotube coating of claim 12, wherein applying of the solution comprises spraying the solution with an atomizer.
- 16. The method for patterning the carbon nanotube coating of claim 12, wherein impregnating the carbon nanotube film comprises printing the binder on the carbon nanotube film with a predetermined pattern.
- 17. The method for patterning the carbon nanotube coating of claim 12, wherein removing the carbon nanotubes comprising spray washing the carbon nanotube film with a mixture of water and a surfactant.
- 18. A method for patterning a carbon nanotube coating, comprising:
providing a solution of carbon nanotubes; applying the solution to a substrate to form a film of consolidated carbon nanotubes on the substrate; impregnating the carbon nanotube film with a photoresist; projecting a predetermined pattern onto the carbon nanotube film impregnated with the photoresist to secure a part of the carbon nanotube film; and removing at lest a part of the carbon nanotube film that is not secured by the projection from the substrate.
- 19. The method for patterning a carbon nanotube coating of claim 18, wherein providing the solution of carbon nanotubes comprises purifying the carbon nanotubes.
- 20. The method for patterning a carbon nanotube coating of claim 18, wherein providing the solution of carbon nanotubes comprises dispersing the carbon nanotubes in a solution of water and an alcohol.
- 21. The method for patterning a carbon nanotube coating of claim 18, wherein applying the solution comprises spraying the solution with an atomizer.
- 22. The method for patterning a carbon nanotube coating of claim 18, wherein impregnating the carbon nanotube film comprises rod coating the photoresist on the substrate or spin coating the photoresist on the substrate.
- 23. The method for patterning a carbon nanotube coating of claim 18, wherein removing the carbon nanotube film comprises removing the unsecured part of the carbon nanotube film with a developer solution of the photoresist.
- 24. A method for patterning a carbon nanotube coating, comprising:
providing a solution of carbon nanotubes; applying the solution to a substrate to form a film of consolidated carbon nanotubes on the substrate; exposing the carbon nanotube film to a light source through a mask; and impregnating the exposed carbon nanotube film with a binder.
- 25. The method for patterning a carbon nanotube coating of claim 25, wherein providing the solution of carbon nanotubes comprises purifying.
- 26. The method for patterning a carbon nanotube coating of claim 25, wherein providing the solution of carbon nanotubes comprises dispersing the carbon nanotubes in a solution of water and an alcohol.
- 27. The method for patterning a carbon nanotube coating of claim 25, wherein applying the solution comprises spraying the solution with an atomizer.
- 28. The method for patterning a carbon nanotube coating of claim 25, wherein impregnating the carbon nanotube film comprises spraying the binder.
- 29. A method for patterning a carbon nanotube coating, comprising:
providing a coating mixture comprising carbon nanotubes and a solvent; applying the coating mixture on a substrate to form a predetermined pattern; removing the solvent from the coating mixture printed on the substrate to leave a film of consolidated carbon nanotubes on the substrate; and impregnating the carbon nanotube film with a binder.
- 30. The method for patterning a carbon nanotube coating of claim 30, wherein providing the coating mixture comprises purifying.
- 31. The method for patterning a carbon nanotube coating of claim 30, wherein providing the coating mixture comprises dispersing the carbon nanotubes in a solution of water.
- 32. The method for patterning a carbon nanotube coating of claim 30, wherein applying the coating mixture comprises screen printing, jet printing or gravure roll printing.
- 33. The method for patterning a carbon nanotube coating of claim 30, wherein removing the solvent comprises heating the substrate.
- 34. The method for patterning a carbon nanotube coating of claim 30, wherein impregnating the carbon nanotube film comprises spraying the binder.
- 35 The method for patterning a carbon nanotube coating of claim 30, wherein providing the coating mixture comprises adding a viscosity modifying agent.
- 36 A method for patterning a carbon nanotube coating, comprising:
providing a solution of carbon nanotubes; applying the solution to a substrate to form a film of consolidated carbon nanotubes on the substrate; removing at least a part of the carbon nanotube film from the substrate. impregnating the carbon nanotube film remaining on the substrate with a binder.
- 37. The method for patterning the carbon nanotube coating of claim 37, wherein providing the solution of carbon nanotubes comprises purifying the carbon nanotubes.
- 38. The method for patterning the carbon nanotube coating of claim 37, wherein the providing of the solution of carbon nanotubes comprises dispersing the carbon nanotubes in a solution of water and an alcohol.
- 39. The method for patterning the carbon nanotube coating of claim 37, wherein applying of the solution comprises spraying the solution with an atomizer.
- 40. The method for patterning the carbon nanotube coating of claim 12, wherein impregnating the carbon nanotube film comprises spraying the binder.
- 41. The method for patterning the carbon nanotube coating of claim 12, wherein removing the carbon nanotubes comprising transferring a part of the carbon nanotube film from the substrate to a sticky surface.
REFERENCE TO RELATED APPLICATIONS
[0001] This invention claims priority to U.S. Provisional Application No. 60/381,809 entitled NT Mixtures, and U.S. Provisional Application No 60/381,810 entitled Patterning NT-Based Coatings, both of which were filed on May 21, 2002.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60381809 |
May 2002 |
US |
|
60381810 |
May 2002 |
US |