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US Patent 9660265 Lithium sulfur batteries and electrolytes and sulfur cathodes thereof

Patent 9660265 was granted and assigned to Polyplus Battery Company on May, 2017 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
Polyplus Battery Company
Polyplus Battery Company
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Current Assignee
Polyplus Battery Company
Polyplus Battery Company
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
96602650
Patent Inventor Names
Nikolay Goncharenko0
Alexei Petrov0
Bruce D. Katz0
Lutgard C. De Jonghe0
Steven J. Visco0
Valentina Loginova0
Vitaliy Nimon0
Yevgeniy S. Nimon0
Date of Patent
May 23, 2017
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Patent Application Number
146576950
Date Filed
March 13, 2015
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Patent Citations Received
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US Patent 12021187 Surface treatment of a sulfide glass solid electrolyte layer
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US Patent 12021238 Glassy embedded solid-state electrode assemblies, solid-state batteries and methods of making electrode assemblies and solid-state batteries
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US Patent 12122120 Additive manufacturing processes and additively manufactured products
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US Patent 11664547 Moisture and carbon dioxide management system in electrochemical cells
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US Patent 11749834 Methods of making lithium ion conducting sulfide glass
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US Patent 11973254 Aqueous polysulfide-based electrochemical cell
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US Patent 11949129 Refuelable battery for the electric grid and method of using thereof
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0
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Patent Primary Examiner
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Scott J Chmielecki
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Patent abstract

Lithium sulfur battery cells that use water as an electrolyte solvent provide significant cost reductions. Electrolytes for the battery cells may include water solvent for maintaining electroactive sulfur species in solution during cell discharge and a sufficient amount of a cycle life-enhancing compound that facilitates charging at the cathode. The combination of these two components enhances one or more of the following cell attributes: energy density, power density and cycle life. For instance, in applications where cost per Watt-Hour (Wh) is paramount, such as grid storage and traction applications, the use of an aqueous electrolyte in combination with inexpensive sulfur as the cathode active material can be a key enabler for the utility and automotive industries, for example, providing a cost effective and compact solution for load leveling, electric vehicles and renewable energy storage. Sulfur cathodes, and methods of fabricating lithium sulfur cells, in particular for loading lithium sulfide into the cathode structures, provide further advantages.

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