IP Library Granted Patent US 11,670,755
Granted Patent B2
US 11,670,755 · App. 16/798,548 · Granted Jun 6, 2023

Modified electrolyte-anode interface for solid-state lithium batteries

Inventor: Rohan Gokhale (Northville, MI)
Assignee: Nissan North America, Inc.
H01M4/133H01M4/583H01M4/70H01M10/0525H01M10/0562H01M4/587H01M4/808H01M2004/028H01M2300/0065H01M2300/0068
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Quick Facts
Patent No.
US 11,670,755
App. No.
16/798,548
Granted
Jun 6, 2023
Kind
B2
Abstract

A solid-state battery cell includes a cathode, an anode, a solid-state electrolyte between the cathode and the anode, and an electrolyte-anode interfacial layer between the solid-state electrolyte and the anode. The electrolyte-anode interfacial layer comprises porous, high surface area carbon and nanostructures formed on an anode-facing surface of the solid-state electrolyte, wherein the nanostructures penetrate the porous, high surface area carbon.

Claims (37)

1. A solid-state battery cell, comprising:

a cathode;

an anode having anode active material of lithium metal;

a solid-state electrolyte between the cathode and the anode; and

an electrolyte-anode interfacial layer between the solid-state electrolyte and the anode active material, the electrolyte-anode interfacial layer comprising:

a porous, high surface area carbon; and

nanostructures formed on an anode-facing surface of the solid-state electrolyte, wherein the nanostructures penetrate the porous, high surface area carbon without penetrating the anode.

2. The solid-state battery cell of claim 1 , wherein the porous, high surface area carbon has pores having a pore size between 5 nm and 50 nm.

3. The solid-state battery cell of claim 1 , wherein the porous, high surface area carbon is formed as a pillared network between the nanostructures.

4. The solid-state battery cell of claim 1 , wherein the nanostructures are nanoneedles or nanowires formed of a solid electrolyte material.

5. The solid-state battery cell of claim 4 , wherein the solid-state electrolyte is the same solid electrolyte material as the nanostructures.

6. The solid-state battery cell of claim 4 , wherein the solid-state electrolyte is a different solid electrolyte material from the solid electrolyte material of the nanostructures.

7. The solid-state battery cell of claim 1 , wherein each nanostructure has a length and the solid-state electrolyte has a thickness, a ratio of the length of each nanostructure to the thickness of the solid-state electrolyte being between 1.5×10 −5 :1 and 0.25:1.

8. The solid-state battery cell of claim 1 , wherein a density of the nanostructures is between 5,000 nanostructures/μm 2 and 50,000 nanostructures/μm 2 .

9. The solid-state battery cell of claim 1 , wherein the nanostructures are nanowires having a hooked distal end and the porous, high surface area carbon is formed in loop-like structures.

10. A solid-state battery cell, comprising:

a cathode;

an anode comprising lithium metal;

a solid-state electrolyte between the cathode and the anode; and

an electrolyte-anode interfacial layer between the solid-state electrolyte and the anode, the electrolyte-anode interfacial layer comprising:

a layer of porous, high surface area carbon formed on an electrolyte-facing surface of the lithium metal, the layer of porous, high surface area carbon having no lithium metal prior to charging; and

nanostructures formed on an anode-facing surface of the solid-state electrolyte, the nanostructures penetrating the layer of porous, high surface area carbon to form the electrolyte-anode interfacial layer, wherein the nanostructures are nanoneedles or nanowires and are each vertically aligned with respect to a surface of the solid-state electrolyte, wherein the nanostructures have a length between 80% and 100% a thickness of the electrolyte-anode interfacial layer.

11. The solid-state battery cell of claim 10 , wherein the solid-state electrolyte is formed of a solid electrolyte material and the nanostructures are formed of the same solid electrolyte material.

12. The solid-state battery cell of claim 10 , wherein the solid-state electrolyte is a different solid electrolyte material from a solid electrolyte material of the nanostructures.

13. The solid-state battery cell of claim 10 , wherein each nanostructure has a length and the solid-state electrolyte has a thickness, a ratio of the length of each nanostructure to the thickness of the solid-state electrolyte being between 1.5×10 −5 :1 and 0.25:1.

14. The solid-state battery cell of claim 10 , wherein a density of the nanostructures is between 5,000 nanostructures/μm 2 and 50,000 nanostructures/μm 2 .

15. The solid-state battery cell of claim 10 , wherein the porous, high surface area carbon has pores having a pore size between 5 nm and 50 nm.

16. The solid-state battery cell of claim 10 , wherein a diameter of each nanostructure is between 10 nm and 100 nm.

17. The solid-state battery cell of claim 10 , wherein the nanostructures are nanowires having a hooked distal end and the porous, high surface area carbon is formed in loop-like structures.

18. A solid-state battery cell, comprising:

a cathode;

an anode comprising lithium;

a solid-state electrolyte between the cathode and the anode; and

an electrolyte-anode interfacial layer between the solid-state electrolyte and the anode active material, the electrolyte-anode interfacial layer comprising:

a porous, high surface area carbon; and

nanostructures formed on an anode-facing surface of the solid-state electrolyte,

wherein the nanostructures penetrate the porous, high surface area carbon and are nanowires having a hooked distal end and the porous, high surface area carbon is formed in loop-like structures.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 8, 2023
From: NISSAN NORTH AMERICA, INC.
To: NISSAN MOTOR CO., LTD.
Reel/Frame 064525/0488 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 24, 2020
From: GOKHALE, ROHAN
To: NISSAN NORTH AMERICA, INC.
Reel/Frame 051897/0862 →
Continuity (1)
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