Method and composition for screen printing of conductive features
View Patent ↗Disclosed is a method of screen printing an electrically conductive feature on a substrate, the electrically conductive feature including metallic anisotropic nanostructures, and a coating solution therefore.
1. A coating composition for screen printing including:
a thickener;
a base; and
0.1-1% metallic anisotropic nanostructures by weight of coating composition,
wherein the base is in an amount sufficient to neutralize the thickener to provide the coating solution having a viscosity greater than 200 cP.
2. The coating composition of claim 1 wherein a ratio of thickener to anisotropic nanostructures is from 99 to 999.
3. The coating composition of claim 2 wherein the thickener is polyurathane in a solution of water and propylene glycol (4:6).
4. A coating composition for screen printing comprising:
a cellulose thickener;
a base;
0.1-1% metallic anisotropic nanostructures; and
a solvent, wherein the base is in an amount sufficient to neutralize the thickener to provide the coating solution having a viscosity greater than 200 cP.
5. The coating composition of claim 4 wherein;
a ratio of thickener to anisotropic nanostructures is from 1 to 100; and
a ratio of solvent to anisotropic nanostructures is from 89 to 989.
6. The coating composition of claim 5 wherein the thickener is one of ethyl cellulose, hydropropyl cellulose and hydroxyl propyl cellulose and the solvent is one of water, PGME, ethyl lactate, benzyl alcohol and diacetone alcohol.
7. The coating composition of claim 4 wherein:
a ratio of thickener to anisotropic nanostructures is from 0.1 to 16;
a ratio of solvent to anisotropic nanostructures is from 90.8 to 198.8; and
a ratio of base to anisotropic nanostructures is from 0.01 to 0.4.
8. The coating composition of claim 7 wherein the thickener includes an acrylic polymer.
9. The coating composition of claim 1 wherein the metallic anisotropic nanostructures are metallic nanowires or metallic nanotubes.
10. The coating composition of claim 4 wherein the metallic anisotropic nanostructures are silver nanowires or gold nanotubes.
11. The coating composition of claim 1 having a viscosity of greater than 900 cP.
12. The coating composition of claim 4 having a viscosity of greater than 900 cP.