Standalone sulfide based lithium ion-conducting glass solid electrolyte and associated structures, cells and methods
Abstract
A standalone lithium ion-conductive solid electrolyte including a freestanding inorganic vitreous sheet of sulfide-based lithium ion conducting glass is capable of high performance in a lithium metal battery by providing a high degree of lithium ion conductivity while being highly resistant to the initiation and/or propagation of lithium dendrites. Such an electrolyte is also itself manufacturable, and readily adaptable for battery cell and cell component manufacture, in a cost-effective, scalable manner.
- Inventors:
- Issue Date:
- Research Org.:
- PolyPlus Battery Co., Berkeley, CA (United States)
- Sponsoring Org.:
- USDOE Advanced Research Projects Agency - Energy (ARPA-E)
- OSTI Identifier:
- 1771620
- Patent Number(s):
- 10833361
- Application Number:
- 16/161,720
- Assignee:
- PolyPlus Battery Company (Berkeley, CA)
- Patent Classifications (CPCs):
-
C - CHEMISTRY C03 - GLASS C03B - MANUFACTURE, SHAPING, OR SUPPLEMENTARY PROCESSES
C - CHEMISTRY C03 - GLASS C03C - CHEMICAL COMPOSITION OF GLASSES, GLAZES, OR VITREOUS ENAMELS
- DOE Contract Number:
- AR0000349; AR0000772
- Resource Type:
- Patent
- Resource Relation:
- Patent File Date: 10/16/2018
- Country of Publication:
- United States
- Language:
- English
Citation Formats
Visco, Steven J., Nimon, Yevgeniy S., De Jonghe, Lutgard C., Katz, Bruce D., and Nimon, Vitaliy. Standalone sulfide based lithium ion-conducting glass solid electrolyte and associated structures, cells and methods. United States: N. p., 2020.
Web.
Visco, Steven J., Nimon, Yevgeniy S., De Jonghe, Lutgard C., Katz, Bruce D., & Nimon, Vitaliy. Standalone sulfide based lithium ion-conducting glass solid electrolyte and associated structures, cells and methods. United States.
Visco, Steven J., Nimon, Yevgeniy S., De Jonghe, Lutgard C., Katz, Bruce D., and Nimon, Vitaliy. Tue .
"Standalone sulfide based lithium ion-conducting glass solid electrolyte and associated structures, cells and methods". United States. https://www.osti.gov/servlets/purl/1771620.
@article{osti_1771620,
title = {Standalone sulfide based lithium ion-conducting glass solid electrolyte and associated structures, cells and methods},
author = {Visco, Steven J. and Nimon, Yevgeniy S. and De Jonghe, Lutgard C. and Katz, Bruce D. and Nimon, Vitaliy},
abstractNote = {A standalone lithium ion-conductive solid electrolyte including a freestanding inorganic vitreous sheet of sulfide-based lithium ion conducting glass is capable of high performance in a lithium metal battery by providing a high degree of lithium ion conductivity while being highly resistant to the initiation and/or propagation of lithium dendrites. Such an electrolyte is also itself manufacturable, and readily adaptable for battery cell and cell component manufacture, in a cost-effective, scalable manner.},
doi = {},
journal = {},
number = ,
volume = ,
place = {United States},
year = {2020},
month = {11}
}
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