Multilayer nanoporous separator
A separator for a lithium battery having (a) a porous polymeric layer, such as a polyethylene layer; and (b) a nanoporous inorganic particle/polymer layer on both sides of the polymeric layer, the nanoporous layer having an inorganic oxide and one or more polymers; the volume fraction of the polymers in the nanoporous layer is about 15% to about 50%, and the crystallite size of the inorganic oxide is 5 nm to 90 nm.
1. A separator for a lithium battery comprising: (a) a porous polymeric layer, and (b) a second porous layer adjacent said porous polymeric layer, wherein said second porous layer comprises hydrophobic inorganic oxide particles and one or more polymers, wherein 0.27 grams, or greater, per square meter of hydrophobic inorganic oxide particles are disposed within the pores of the porous polymeric layer, and wherein the amount of water in the separator is no more than 600 parts per million.
2. The separator of claim 1 , wherein the hydrophobic inorganic oxide particles comprise boehmite.
3. The separator of claim 2 , wherein the second porous layer comprises an organic carbonate treated boehmite.
4. The separator of claim 3 , wherein the organic carbonate reacts with hydroxyl groups of the boehmite.
5. The separator of claim 3 , wherein the organic carbonate is ethylene carbonate or fluoroethylene carbonate.
6. The separator of claim 1 , wherein the inorganic oxide particles have a crystallite size of about 30 nm to about 90 nm.
7. The separator of claim 2 , wherein the boehmite has a crystallite size of about 30 nm to about 50 nm.
8. The separator of claim 1 , wherein the amount of water in the separator is no more than 300 parts per million of water.
9. The separator of claim 1 , wherein the amount of water in the separator is no more than 100 parts per million of water.
10. The separator of claim 1 , wherein the second porous layer is a nanoporous layer.
11. The separator of claim 1 , wherein the total coating weight of said second porous layer is less than 4.5 grams per square meter.
12. The separator of claim 1 , wherein the wherein an average crystallite size of said inorganic particles disposed within the pores of said second porous polymeric layer is between 5 nm and 90 nm.