Batteries utilizing anode coatings directly on nanoporous separators
View Patent ↗Provided is 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. Also provided are methods of preparing such separator/anode assemblies.
1. A separator/anode assembly for use in an electric current producing cell, wherein said assembly comprises an anode current collector layer interposed between a first anode layer and a second anode layer and a porous separator layer on a side of said first anode layer opposite to the side of said anode current collector layer, wherein there are no pores larger than 0.2 microns in diameter in the porous separator layer, said first anode layer is coated directly on said porous separator layer from a pigment dispersion comprising an organic solvent or water, and said porous separator layer comprises inorganic oxide particles.
2. The separator/anode assembly of claim 1 , wherein said first anode layer comprises anode particles selected from the group consisting of electroactive particles and electrically conductive particles, and wherein said anode particles are not present in said separator layer.
3. The separator/anode assembly of claim 1 , wherein said separator layer comprises separator particles, and wherein said separator particles are not present in said first anode layer.
4. The separator/anode assembly of claim 3 , wherein said separator particles are selected from the group consisting of, inorganic nitride particles, inorganic carbonate particles, inorganic sulfate particles, and polymer particles.
5. The separator/anode assembly of claim 1 , wherein the thickness of said separator layer is less than 9 microns.
6. The separator/anode assembly of claim 1 , wherein said separator layer comprises a xerogel membrane.
7. The separator/anode assembly of claim 1 , wherein said separator layer comprises aluminum boehmite.
8. The separator/anode assembly of claim 1 , wherein said separator layer is a heat resistant separator layer with dimensional stability at 200° C.
9. The separator/anode assembly of claim 1 , wherein said anode current collector layer is coated directly on said first anode layer on the side opposite to said separator layer.
10. The separator/anode assembly of claim 9 , wherein said anode current collector layer comprises an electrically conductive material selected from the group consisting of electrically conductive metals, electrically conductive carbons, and electrically conductive polymers.
11. The separator/anode assembly of claim 9 , wherein said anode current collector layer comprises two or more layers coated directly on said first anode layer and wherein at least one of said two or more layers comprises an electrically conductive material comprising carbon.
12. The separator/anode assembly of claim 1 , wherein said second anode layer is coated directly on said anode current collector layer on the side opposite to said first anode layer.
13. A separator/anode assembly for use in an electric current producing cell, wherein said separator/anode assembly comprises an anode layer and a porous separator layer on one side of said anode layer, wherein said anode layer is coated directly on said separator layer from a pigment dispersion comprising an organic solvent or water, there are no pores larger than 0.2 microns in diameter in the porous separator layer, and said porous separator layer comprises inorganic oxide particles.
14. The separator/anode assembly of claim 13 , wherein said anode layer comprises lithium.