IP Library Granted Patent US 11,631,889
Granted Patent B2
US 11,631,889 · App. 17/248,225 · Granted Apr 18, 2023

Methods and materials for protection of sulfide glass solid electrolytes

Inventors: Steven J. Visco (Berkeley, CA); Vitaliy Nimon (San Francisco, CA); Yevgeniy S. Nimon (Danville, CA); Bruce D. Katz (Moraga, CA)
Assignee: PolyPlus Battery Company
H01M10/0562H01M10/0525H01M50/403H01M50/437H01M50/451H01M50/457H01M2300/0068H01M2300/0094
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Quick Facts
Patent No.
US 11,631,889
App. No.
17/248,225
Granted
Apr 18, 2023
Kind
B2
Abstract

A sulfide glass solid electrolyte sheet can be protected from reaction with moisture by a thin metal layer coating converted to a thin electrochemically functional and protective compound layer. The converted protective compound layer is electrochemically functional in that it allows for through transport of lithium ions.

Claims (26)

1. A protected sulfide glass solid electrolyte, comprising:

a lithium ion conducting sulfide glass sheet having first and second opposing principal side surfaces;

a first converted protective compound layer disposed adjacent to and in direct touching contact with the first principal side surface of the sulfide glass sheet, wherein the first converted protective compound layer comprises a first metal that is not lithium and a first nonmetal, wherein the first nonmetal is selected from the group consisting of a nonmetal chalcogen, a nonmetal halogen, and a nonmetal pnictogen; and

a second converted protective compound layer disposed adjacent to and in direct touching contact with the second principal side surface of the glass sheet, wherein the second converted protective compound layer comprises a second metal that is not lithium and a second nonmetal, wherein the first nonmetal is selected from the group consisting of a nonmetal chalcogen, nonmetal halogen, and nonmetal pnictogen;

wherein the first and second metal of the first and second converted protective compound layer respectively are different metals.

2. The protected sulfide glass solid electrolyte of claim 1 , wherein the first nonmetal is selected from the group consisting of oxygen, sulfur, nitrogen, iodine and bromine.

3. The protected sulfide glass solid electrolyte of claim 1 , wherein the first converted protective compound layer is a binary compound essentially consisting of the first metal and the first non-metal.

4. The protected sulfide glass solid electrolyte of claim 3 , wherein the first metal of the first converted protective compound layer is selected from the group consisting of Al, Sn, In, Si, Cu, Fe, Mo, W, Ta, Ag, and Ti.

5. The protected sulfide glass solid electrolyte of claim 1 , wherein the second metal is selected from the group consisting of Al, Sn, In, Si, Cu, Fe, Mo, W, Ta, Ag and Ti.

6. The protected sulfide glass solid electrolyte of claim 2 , wherein the first or second nonmetal is oxygen.

7. A protected sulfide glass solid electrolyte, comprising:

a lithium ion conducting sulfide glass sheet having first and second opposing principal side surfaces;

a first converted protective compound layer disposed adjacent to and in direct touching contact with the first principal side surface of the sulfide glass sheet, wherein the first converted protective compound layer comprises a first metal that is not lithium and a first nonmetal, wherein the first nonmetal is selected from the group consisting of a nonmetal chalcogen, a nonmetal halogen, and a nonmetal pnictogen; and

a second converted protective compound layer disposed adjacent to and in direct touching contact with the second principal side surface of the glass sheet, wherein the second converted protective compound layer comprises a second metal that is not lithium and a second nonmetal, wherein the first nonmetal is selected from the group consisting of a nonmetal chalcogen, nonmetal halogen, and nonmetal pnictogen;

wherein the first or second nonmetal is sulfur.

8. A protected sulfide glass solid electrolyte, comprising:

a lithium ion conducting sulfide glass sheet having first and second opposing principal side surfaces;

a first converted protective compound layer disposed adjacent to and in direct touching contact with the first principal side surface of the sulfide glass sheet, wherein the first converted protective compound layer comprises a first metal that is not lithium and a first nonmetal, wherein the first nonmetal is selected from the group consisting of a nonmetal chalcogen, a nonmetal halogen, and a nonmetal pnictogen; and

a second converted protective compound layer disposed adjacent to and in direct touching contact with the second principal side surface of the glass sheet, wherein the second converted protective compound layer comprises a second metal that is not lithium and a second nonmetal, wherein the first nonmetal is selected from the group consisting of a nonmetal chalcogen, nonmetal halogen, and nonmetal pnictogen;

wherein the first or second nonmetal is nitrogen.

9. A protected sulfide glass solid electrolyte, comprising:

a lithium ion conducting sulfide glass sheet having first and second opposing principal side surfaces;

a first converted protective compound layer disposed adjacent to and in direct touching contact with the first principal side surface of the sulfide glass sheet, wherein the first converted protective compound layer comprises a first metal that is not lithium and a first nonmetal, wherein the first nonmetal is selected from the group consisting of a nonmetal chalcogen, a nonmetal halogen, and a nonmetal pnictogen; and

a second converted protective compound layer disposed adjacent to and in direct touching contact with the second principal side surface of the glass sheet, wherein the second converted protective compound layer comprises a second metal that is not lithium and a second nonmetal, wherein the first nonmetal is selected from the group consisting of a nonmetal chalcogen, nonmetal halogen, and nonmetal pnictogen;

wherein the first or second nonmetal is bromine or iodine.

10. The protected sulfide glass solid electrolyte of claim 1 , wherein the thickness of the first converted protective compound layer is in the range of 10 nm to 100 nm.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 5, 2021
From: VISCO, STEVEN J.; NIMON, VITALIY; NIMON, YEVGENIY S.; KATZ, BRUCE D.
To: POLYPLUS BATTERY COMPANY
Reel/Frame 055824/0874 →
CONFIRMATORY LICENSE Recorded Jan 15, 2021
From: POLYPLUS BATTERY COMPANY
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 055009/0804 →
Continuity (2)
Provisional Application 62961652 · Jan 15, 2020
Related Publication 20210218055A1 · Jul 15, 2021
Cited By (7)
US 12,237,511 US 12,294,050 US 12,294,051 US 12,374,717 US 12,454,478 US 12,482,827 US 12,482,857