Conductive nanocomposite films
View Patent ↗Methods for preparing low resistivity nanocomposite layers that simultaneously offer optical clarity, wear resistance and superior functional performance. Nanofillers and a substance having a polymer are mixed. Both low-loaded and highly-loaded nanocomposites are included. Nanoscale coated and un-coated fillers may be used. Nanocomposite films may be coated on substrates.
1. A method for preparing an optically clear nanocomposite layer comprising:
processing a mixture to produce an optically clear nanocomposite comprising less than 80% nanofillers by volume and having
a transparency to light that differs by more than 20% as compared with the transparency to light exhibited by a composite material of similar composition with filler particles having a domain size of one micron, the mixture comprising nanofillers and a liquid polymer matrix selected from the group consisting of polyacrylates, polyalcohols, polycarbonates, polyalkenes, polyaryls, and combinations thereof.
2. The method of claim 1 wherein the mixing includes adding a secondary species material selected from the group consisting of: dispersants, binders, modifiers, detergents, and additives.
3. The method of claim 1 wherein the loading is heterogeneous.
4. The method of claim 1 wherein the nanofillers comprise whiskers.
5. The method of claim 1 wherein the nanocomposite is wear resistant.
6. The method of claim 1 wherein the nanofillers comprise oxide.
7. The method of claim 1 wherein the nanofillers comprise carbide.
8. The method of claim 1 wherein the nanofillers comprise one or more elements selected from the group consisting of: aluminum, barium, bismuth, cadmium, calcium, cerium, cesium, cobalt, copper, europium, gallium, gold, indium, iron, lanthanum, lithium, magnesium, manganese, molybdenum, neodymium, nickel, niobium, palladium, platinum, potassium, praseodymium, scandium, silver, sodium, strontium, tantalum, tin, titanium, tungsten, vanadium, ytterbium, yttrium, zinc, and zirconium.
9. The method of claim 1 wherein the nanofillers comprise one or more elements selected from the group consisting of: antimony, boron, bromine, carbon, chlorine, fluorine, germanium, hydrogen, iodine, nitrogen, oxygen, phosphorus, selenium, silicon, sulfur, and tellurium.
10. The method of claim 1 wherein the liquid polymer matrix comprises oxygen.
11. A product prepared using the method of claim 1 .
12. An optically clear nanocomposite layer prepared using the method of claim 1 .
13. A method for preparing an optically clear nanocomposite layer comprising:
processing a mixture to produce an optically clear nanocomposite comprising less than 80% nanofillers by volume and having
a transparency to light that differs by more than 20% as compared with the transparency to light exhibited by a composite material of similar composition with filler particles having a domain size of one micron, the mixture comprising nanofillers and a matrix selected from the group consisting of polyacrylates, polyalcohols, polycarbonates, polyalkenes, polyaryls, and combinations thereof.
14. An optically clear nanocomposite layer prepared using the method of claim 13 .
15. A method for preparing an optically clear nanocomposite layer comprising:
processing a mixture to produce an optically clear nanocomposite comprising less than 80% nanofillers by volume, having a connectivity of the nanofillers in at least one of 1, 2, and 3 dimensions, and having
a transparency to light that differs by more than 20% as compared with the transparency to light exhibited by a composite material of similar composition with filler particles having a domain size of one micron, the mixture comprising nanofillers and a liquid polymer matrix selected from the group consisting of polyacrylates, polyalcohols, polycarbonates, polyalkenes, polyaryls, and combinations thereof.
16. The method of claim 15 wherein the nanofillers comprise whiskers.
17. The method of claim 15 wherein the nanofillers comprise one or more elements selected from the group consisting of: antimony, boron, bromine, carbon, chlorine, fluorine, germanium, hydrogen, iodine, nitrogen, oxygen, phosphorus, selenium, silicon, sulfur, and tellurium.
18. The method of claim 15 wherein the liquid polymer matrix comprises oxygen.
19. A product prepared using the method of claim 15 .
20. An optically clear nanocomposite layer prepared using the method of claim 15 .