HYBRID PATTERNED NANOSTRUCTURE TRANSPARENT CONDUCTORS
Disclosed herein are nanostructure patterned transparent conductors and methods of forming such transparent conductors including using a deposition method to form an active area and peripheral area and patterning method to pattern the active area.
1 . A method of forming a patterned transparent conductor including anisotropic metallic nanostructures comprising:
depositing a transparent conductive layer including anisotropic metallic nanostructures on a substrate to form an active area and a peripheral area, the active area including the transparent conductive layer and the peripheral area being non-conductive; and
patterning the active area to form first regions having a first conductivity and second regions having a second conductivity less than the first conductivity.
2 . The method of claim 1 wherein depositing a transparent conductive layer includes a deposition method selected from the group consisting of; sheet coating, web-coating, screen printing, flexographic printing, gravure printing, gravure offset printing, reverse offset printing, inkjet printing, slot die coating, and aerosol spray coating.
3 . The method of claim 1 wherein the active area is patterned by laser patterning or etching.
4 . The method of any of claim 1 wherein the area of the active area is from 10% to 95% of the sum of the area of the peripheral area and the area of the active area.
5 . The method of any of claim 1 wherein the second areas are non-conductive.
6 . The method of any of claim 1 wherein the patterned transparent conductor is formed using a roll-to-roll process.
7 . A touch screen, photovoltaic cell, or electroluminescent device including the transparent conductor of any of claim 1 .