IP Library › Granted Patent US 11,152,641
Granted Patent B2
US 11,152,641 · App. 16/327,804 · Granted Oct 19, 2021

Sulfide solid electrolyte

Inventors: Ryoji Kanno (Tokyo, JP); Masaaki Hirayama (Tokyo, JP); Kota Suzuki (Tokyo, JP); Yulong Sun (Tokyo, JP); Satoshi Hori (Tokyo, JP)
Assignee: Tokyo Institute of Technology
H01M10/0562C01B33/00C01D15/00C01G19/006C04B35/547H01B1/06H01M6/18C01P2002/50C01P2002/72C01P2006/40H01M10/0525H01M2300/0068
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Quick Facts
Patent No.
US 11,152,641
App. No.
16/327,804
Granted
Oct 19, 2021
Kind
B2
Abstract

Provided is a sulfide solid electrolyte material which has a composition that does not contain Ge, while having a smaller Li content than conventional sulfide solid electrolyte materials, and which has both lithium ion conductivity and chemical stability at the same time. A sulfide solid electrolyte which has a crystal structure represented by composition formula (Li 3.45+β−4α Sn α )(Si 0.36 Sn 0.09 )(P 0.55−β Si β )S 4 (wherein α≤0.67, β≤0.33 and 0.43<α+β (provided that 0.23<α≤0.4 when β=0.2 and 0.13<α≤0.4 when β=0.3 may be excluded)), or a crystal structure represented by composition formula Li 7+γ Si γ P 1−γ S 6 (wherein 0.1≤γ<0.3).

Claims (6)

1. A sulfide solid electrolyte having characteristic peaks in at least the vicinity of diffraction angles 2θ: 15.9°, 18.3°, 25.9°, 30.4°, 31.8°, 40.3° 41.3°, 45.5° and 48.4° in powder X-ray diffraction using Cu-K α radiation with an X-ray wavelength of 1.5418 angstrom, wherein the sulfide solid electrolyte has a crystalline structure represented by the compositional formula (Li 3.45+β−4α Sn α )(Si 0.36 Sn 0.09 )(P 0.55−β Si β S 4 where α≤0.67, β≤0.33, and 0.43<α+β, with the provision that 0.23<α≤0.4 when β=0.2, and 0.13<α≤0.4 when β=0.3 are excluded.

2. The sulfide solid electrolyte according to claim 1 wherein 0.2≤β.

3. The sulfide solid electrolyte according to claim 1 , wherein the sulfide solid electrolyte has characteristic peaks at diffraction angles 2θ: 15.9°±0.50°, 18.3°±0.50°, 25.9°±0.50°, 30.4°±0.50°, 31.8°±0.50°, 40.3°±0.50°, 41.3°±0.50°, 45.5°±0.50° and 48.4°±0.50° in powder X-ray diffraction using Cu-K α radiation with an X-ray wavelength of 1.5418 angstrom.

4. The sulfide solid electrolyte according to claim 1 , wherein the sulfide solid electrolyte has characteristic peaks at diffraction angles 20: 15.9°±0.30°, 18.3°±0.30°, 25.9°±0.30°, 30.4°±0.30°, 31.8°±0.30°, 40.3°±0.30°, 41.3°±0.30°, 45.5°±0.30° and 48.4°±0.30° in powder X-ray diffraction using Cu-K α radiation with an X-ray wavelength of 1.5418 angstrom.

5. A sulfide solid electrolyte having characteristic peaks at diffraction angles 2θ: 15.9°±0.50°, 18.3°±0.50°, 25.9°±0.50°, 30.4°±0.50°, 31.8°±0.50°, 40.3°±0.50°, 41.3°±0.50°, 45.5°±0.50° and 48.4°±0.50° in powder X-ray diffraction using Cu-K α radiation with an X-ray wavelength of 1.5418 angstrom, wherein the sulfide solid electrolyte has a crystalline structure represented by the compositional formula (Li 3.45+β−4α Sn α )(Si 0.36 Sn 0.09 )(P 0.55−β Si β S 4 where α≤0.67, β≤0.33, and 0.43<α+β, with the provision that 0.23<α≤0.4 when β=0.2, and 0.13<α≤0.4 when β=0.3 are excluded.

6. The sulfide solid electrolyte according to claim 5 , wherein the sulfide solid electrolyte has characteristic peaks at diffraction angles 2θ: 15.9°±0.30°, 18.3°±0.30°, 25.9°±0.30°, 30.4°±0.30°, 31.8°±0.30°, 40.3°±0.30°, 41.3°±0.30°, 45.5°±0.30° and 48.4°±0.30° in powder X-ray diffraction using Cu-K α radiation with an X-ray wavelength of 1.5418 angstrom.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2019
From: KANNO, RYOJI; HIRAYAMA, MASAAKI; SUZUKI, KOTA; SUN, YULONG; HORI, SATOSHI
To: TOKYO INSTITUTE OF TECHNOLOGY
Reel/Frame 048418/0153 →
Priority Claims (1)
JP JP2016-163065 · Aug 23, 2016 · national
Continuity (1)
Related Publication 20190237801A1 · Aug 1, 2019
Cited By (1)
US 12,689,060