LITHIUM METAL FOILS WITH LOW DEFECT DENSITY
Commercially-available lithium metal foils have been found to have a high density of crystalline defects. When such foils are used as the anode in a secondary lithium metal battery cell, repeated cycling may lead to the formation of lithium shunts near the crystalline defects, which can cause shorting. Methods described herein may be used to reduce the density of crystalline defects in lithium metal foils. Such lithium metal can be used as the anode in lithium battery cells.
1 . A method of reducing defect density in a lithium metal foil, comprising;
providing molten lithium metal;
adding a gettering material to the molten lithium metal;
holding the molten lithium metal at a temperature of 550° C. for at least 180 minutes; separating the molten lithium from the getter material by filtration;
casting the molten lithium to form an ingot; and
extruding the ingot to form a foil.
2 . The method of claim 1 , further comprising rolling the foil to reduce its thickness.