IP Library Patent Application 17813463
Patent Application
App. No. 17/813,463

BINARY PHOSPHORUS NITRIDE PROTECTIVE SOLID ELECTROLYTE INTERMEDIARY STRUCTURES FOR ELECTRODE ASSEMBLIES

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Patent No.
US None
App. No.
17/813,463
Abstract

An intermediary solid electrolyte structure having a Li ion conducting solid electrolyte layer covered with a thin as-deposited lithium phosphorus nitride film.

Claims (21)

1 . An intermediary solid electrolyte structure comprising a Li ion conducting solid electrolyte layer having a first major surface and a thin as-deposited lithium phosphorus nitride film covering the first major surface.

2 . The intermediary solid electrolyte structure of claim 1 wherein the lithium phosphorus nitride film comprises lithium, phosphorus and nitrogen as constituent elements of the as-deposited film, and the film is substantially devoid of oxygen.

3 . The intermediary solid electrolyte structure of claim 1 wherein the lithium phosphorus nitride film consists essentially of lithium, phosphorus and nitrogen.

4 . The intermediary solid electrolyte structure of claim 1 wherein the lithium phosphorus nitride film consists of lithium, phosphorus and nitrogen.

5 . The intermediary solid electrolyte structure of claim 1 wherein the mole percent of Li is in the range of 0.4 to 1.9% and the mole percent of P is in the range of 37.5% to 36.5% and the mole percent of N is in the range of 62.5% to 61.5%.

6 . The intermediary solid electrolyte structure of claim 1 wherein the mole percent of Li is in the range of 1.9% to 4% and the mole percent of P is in the range of 36.5% to 35.5% and the mole percent of N is in the range of 61.5% to 60.5%

7 . The intermediary solid electrolyte structure of claim 1 wherein the mole percent of Li is in the range of 4% to 8.3% and the mole percent of P is in the range of 35.5% to 33.3% and the mole percent of N is in the range of 60.5% to 58.3%.

8 . The intermediary solid electrolyte structure of claim 1 wherein the mole percent of Li is in the range of 8.3% to 13.2% and the mole percent of P is in the range of 33.3% to 30.9% and the mole percent of N is in the range of 58.3% to 55.9%.

9 . The intermediary solid electrolyte structure of claim 1 wherein the mole percent of Li is in the range of 13.2% to 18.8% and the mole percent of P is in the range of 30.9% to 28.1% and the mole percent of N is in the range of 55.9% to 53.1%.

10 . The intermediary solid electrolyte structure of claim 1 wherein the mole percent of Li is in the range of 18.8% to 25% and the mole percent of P is in the range of 28.1% to 25.0% and the mole percent of N is in the range of 53.1.5% to 50.0%.

11 . The intermediary solid electrolyte structure of claim 1 wherein the mole percent of Li is in the range of 25% to 32.1% and the mole percent of P is in the range of 25.0% to 21.4% and the mole percent of N is in the range of 50.0% to 46.4%.

12 . The intermediary solid electrolyte structure of claim 1 wherein the mole percent of Li is in the range of 32.1% to 40.4% and the mole percent of P is in the range of 21.4% to 17.3% and the mole percent of N is in the range of 24.4% to 42.3%.

13 . The intermediary solid electrolyte structure of claim 1 wherein the mole percent of Li is in the range of 40.4% to 50% and the mole percent of P is in the range of 17.3% to 12.5% and the mole percent of N is in the range of 42.3% to 37.5%.

14 . The intermediary solid electrolyte structure of claim 1 wherein the mole percent of Li is in the range of 50% to 58.3% and the mole percent of P is in the range of 12.5% to 8.3% and the mole percent of N is in the range of 37.5% to 33.3%.

15 . The intermediary solid electrolyte structure of claim 1 wherein the mole percent of Li is in the range of 58.3% to 61.4% and the mole percent of P is in the range of 8.3% to 6.8% and the mole percent of N is in the range of 33.3% to 31.8%.

16 . The intermediary solid electrolyte structure of claim 1 wherein the Li ion conducting solid electrolyte layer is a sulfide glass.

17 . The intermediary solid electrolyte structure of claim 1 wherein the Li ion conducting solid electrolyte layer is a lithium metal phosphate having a NASICON type structure.

18 . The intermediary solid electrolyte structure of claim 1 wherein the Li ion conducting solid electrolyte layer has a garnet-like structure.

19 . A physical vapor deposition target having a target material that consists essentially of Li, P and N as constituent elements.

20 . The physical vapor deposition target of claim 19 wherein the chemical composition of the target material has a mole percent of Li is in the range of 0.4 to 1.9% and the mole percent of P is in the range of 37.5% to 36.5% and the mole percent of N is in the range of 62.5% to 61.5%.

21 - 30 . (canceled)

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2023
From: VISCO, STEVEN J.; NIMON, YEVGENIY S.; KATZ, BRUCE D.; NIMON, VITALIY; SAVYTSKYY, DMYTRO
To: POLYPLUS BATTERY COMPANY
Reel/Frame 062992/0341 →