METHODS OF FORMING AND USING ELECTROCHEMICAL CELLS COMPRISING A METAL SHEET
Provided herein are electrochemical cells that include a metal sheet adjacent to a solid-state Li ion-conducting electrolyte in a manner that isolates a Li metal negative electrode from exposure to either, or both, a liquid electrolyte or a gel electrolyte used as a catholyte in the positive electrode. Some of the electrochemical cells include a series of electrochemical stacks, which may be stacked in a variety of configurations including configurations that share a Li metal negative electrode.
1 . An electrochemical stack comprising a bilayer and a metal sheet:
wherein said bilayer comprises a lithium-stuffed garnet film and a lithium-stuffed garnet-metal film; and
wherein said metal sheet comprises a first metal layer and a second metal layer, wherein at least a portion of said bilayer is adjacent to said metal sheet.
2 . The electrochemical stack of claim 1 , wherein said lithium-stuffed garnet-metal film contains a first area and a second area, wherein said first area and said second area comprise a similar composition.
3 . The electrochemical stack of any one of claim 1 , wherein said lithium-stuffed garnet-metal film contains a first area and a second area, wherein said first area and said second area comprise different compositions.
4 . The electrochemical stack of claim 2 , wherein said first area of said lithium-stuffed garnet-metal film comprises a first metal powder and lithium-stuffed garnet powder.
5 . The electrochemical stack of claim 4 , wherein said first area of said lithium-stuffed garnet-metal film comprises at least about 50% by molar ratio of said first metal powder and at least about 20% by molar ratio of said lithium-stuffed garnet powder.
6 . The electrochemical stack of claim 2 , wherein said second area of said lithium-stuffed garnet-metal film comprises at least about 50% by molar ratio of a second metal powder.
7 . The electrochemical stack of claim 4 , wherein said first metal powder comprises Ni, Cu, Al, iron, titanium, steel, alloys, or combinations thereof.
8 . The electrochemical stack of claim 6 , wherein said second metal powder comprises Ni, Cu, Al, iron, titanium, steel, alloys, or combinations thereof.
9 . The electrochemical stack of claim 1 , wherein at least a portion of said lithium-stuffed garnet-metal film is adjacent to at least a portion of said second metal layer.
10 . The electrochemical stack of claim 1 , wherein at least 5% by surface area of lithium-stuffed garnet-metal film is adjacent to at least a portion of said second metal layer.
11 . The electrochemical stack of claim 1 , wherein the perimeter of said metal sheet is adjacent to less than about 99% by surface area of said lithium-stuffed garnet-metal film.
12 . The electrochemical stack of claim 1 , wherein the perimeter of said metal sheet is adjacent to less than about 50% by surface area of said lithium-stuffed garnet-metal film.
13 . The electrochemical stack of claim 1 , wherein the perimeter of said metal sheet comprises Ni, Cu, Al, steel, alloys, or combinations thereof.
14 . The electrochemical stack of claim 1 , wherein the perimeter of said metal sheet has a melting temperature of less than about 800° C.
15 .- 32 . (canceled)
33 . A method of making an electrochemical stack comprising:
applying a metal sheet to a bilayer,
wherein said bilayer comprises a lithium-stuffed garnet film and a lithium-stuffed garnet-metal film;
wherein said metal sheet comprises a first metal layer and a second metal layer.
34 .- 35 . (canceled)
36 . An electrochemical stack comprising:
a layer comprising lithium-stuffed garnet;
a layer comprising a ceramic and a metal; and
a metal sheet; wherein
the layer comprising a ceramic and a metal is between and in contact with the layer comprising lithium-stuffed garnet and the metal sheet.
37 . The electrochemical stack of claim 36 , wherein the metal sheet comprises a first portion and a second portion, wherein the metal sheet is adjacent to the layer comprising ceramic and a metal.
38 . The electrochemical stack of claim 36 , wherein the layer comprising a ceramic and a metal is a layer in which the ceramic and the metal were sintered together.
39 . The electrochemical stack of claim 38 , wherein the layer comprising a ceramic and a metal is a layer in which the ceramic and the metal were sintered together as power ceramic and powder metal.
40 . The electrochemical stack of claim 36 , wherein when the stack is completely discharged, the electrochemical stack comprises a bilayer which comprises the layer comprising a lithium-stuffed garnet and the layer comprising a ceramic and a metal.
41 .- 55 . (canceled)