Garnet materials for Li secondary batteries and methods of making and using garnet materials
Set forth herein are garnet material compositions, e.g., lithium-stuffed garnets and lithium-stuffed garnets doped with alumina, which are suitable for use as electrolytes and catholytes in solid state battery applications. Set forth herein are lithium-stuffed garnet thin films having fine grains therein. Disclosed herein are novel and inventive methods of making and using lithium-stuffed garnets as catholytes, electrolytes and/or anolytes for all solid state lithium rechargeable batteries. Disclosed herein are novel electrochemical devices which incorporate these garnet catholytes, electrolytes and/or anolytes. Set forth herein are methods for preparing novel structures, including dense thin free standing membranes of an ionically conducting material for use as a catholyte, electrolyte, and, or, anolyte, in an electrochemical device, a battery component (positive or negative electrode materials), or a complete solid state electrochemical energy storage device. The methods set forth herein disclose novel sintering techniques for solid state energy storage devices and the components thereof.
1. A sintered thin film comprising a lithium-stuffed garnet and Al 2 O 3 , wherein the lithium-stuffed garnet is characterized by the empirical formula Li A La B Zr E O F , wherein 5.5<A<6.7, 3≤B<4, 1≤E≤2, 10<F≤13; and wherein the molar ratio of Al 2 O 3 :garnet is between 0.05 to 0.7, wherein the sintered thin film has a film thickness of about 10 nm to about 100 μm; and wherein the sintered thin film has grains having a d 50 diameter between 100 nm and 10 μm.
2. The sintered thin film of claim 1 , wherein the thin film is characterized by the empirical formula Li x La 3 Zr 2 O 12 .y½Al 2 O 3 , wherein 5.5<x<6.7 and 0.1<y<1.4.
3. The sintered thin film of claim 1 , wherein the molar ratio of Al 2 O 3 :garnet is between 0.25 and 0.45.
4. The sintered thin film of claim 1 , wherein the molar ratio of Al 2 O 3 :garnet is 0.35.
5. An electrochemical device having an electrolyte according to the sintered thin film of claim 1 .
6. The sintered thin film of claim 1 , wherein the film thickness is less than 50 μm and greater than 10 nm.
7. The sintered thin film of claim 1 , wherein the thin film is a thin film monolith.
8. The sintered thin film of claim 1 , wherein the thin film is a sintered thin film monolith.
9. The sintered thin film of claim 1 , wherein the thin film has a density of about 4.5-5.2 g/cm 3 .