Batteries utilizing anode coatings directly on nanoporous separators
Provided are methods of preparing a separator/anode assembly for use in an electric current producing cell, wherein the assembly comprises an anode current collector layer interposed between a first anode layer and a second anode layer and a porous separator layer on the side of the first anode layer opposite to the anode current collector layer, wherein the first anode layer is coated directly on the separator layer.
1. A lithium battery comprising a separator/anode assembly, the separator/anode assembly comprising:
an anode layer; and
a porous separator layer on one side of said anode layer, said porous separator layer comprising a polymer and inorganic oxide particles;
wherein a pigment dispersion of said anode layer is coated directly on a nanoporous structure of said porous separator layer.
2. The lithium battery of claim 1 , wherein said inorganic oxide particles comprise aluminum boehmite.
3. The lithium battery of claim 1 , further comprising an anode current collector layer on said anode layer on the side opposite to said separator layer, and wherein said anode current collector layer comprises a metal.
4. The lithium battery of claim 3 , wherein said anode current collector layer comprises copper.
5. The lithium battery of claim 1 , wherein said anode layer comprises lithium metal.
6. The lithium battery of claim 1 , wherein said anode layer comprises an anode active material in a pigment form.
7. The lithium battery of claim 1 , wherein said pigment dispersion comprises an organic solvent.
8. The lithium battery of claim 7 , wherein said pigment dispersion comprises an anode active material in a pigment form.
9. The lithium battery of claim 1 , wherein said anode layer comprises an anode active material in a pigment form and a conductive carbon pigment.