Electrical separator, method for making same and use thereof in high-power lithium cells
View Patent ↗This object is achieved by an electrical separator according to the invention, comprising a sheetlike flexible substrate having a multiplicity of openings and having a coating on and in said substrate, said substrate being a polymeric nonwoven and said coating being a porous electrically insulating ceramic coating, said separator being characterized by said nonwoven having a thickness of less than 30 μm, a porosity of more than 50% and a pore radius distribution in which at least 50% of the pores have a pore radius from 75 to 150 μm.
1. A separator, comprising a flexible nonwoven having a porous inorganic coating on and in said nonwoven, and wherein the material of said nonwoven is selected from non-woven, nonelectroconductive polymeric fibers, and wherein said nonwoven has a thickness of less than 30 μm, a porosity of more than 50% and a pore radius distribution, in which at least 50% of the pores have a pore radius from 75 to 150 μm.
2. The separator of claim 1 , wherein said separator is less than 35 μm in thickness.
3. The separator of claim 1 , wherein said polymeric fibers are selected from fibers of polyacrylonitrile, polyester, polyolefin or mixtures thereof.
4. The separator of claim 1 wherein said polymeric fibers are from 0.1 to 10 μm in diameter.
5. The separator of claim 1 wherein said flexible nonwoven has a base weight of less than 20 g/m 2 .
6. The separator of claim 1 , wherein said nonwoven is from 5 to 30 μm in thickness.
7. The separator of claim 1 , wherein said porous inorganic coating, present on and in said nonwoven, comprises oxide particles of the elements Al, Si and/or Zr having an average particle size from 0.5 to 7 μm.
8. The separator of claim 1 , wherein said porous inorganic coating, present on and in said nonwoven, comprises aluminum oxide particles having an average particle size from 1 to 4 μm, which are adhered by an oxide of the elements Zr or Si.
9. The separator of claim 1 , wherein said separator is from 30 to 80% in porosity.
10. The separator of claim 1 , wherein said separator has a breaking strength of more than 1 N/cm.
11. The separator of claim 1 , wherein said separator is bendable around a radius down to 100 mm without damage.
12. The separator of claim 1 , wherein said separator is bendable around a radius down to 1 mm without damage.
13. A method of producing a battery, comprising, inserting the separator as claimed in claim 1 into a battery cell.
14. A battery comprising the separator as claimed in claim 1 , and one or more components.