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US Patent 9853287 Electrolyte materials for use in electrochemical cells

Patent 9853287 was granted and assigned to Sion Power Corporation on December, 2017 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Current Assignee
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Sion Power Corporation
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
98532871
Patent Inventor Names
John D. Affinito1
Anna Cristadoro1
Helmut Moehwald1
Igor P. Kovalev1
Ingrid Haupt1
Raimund Pietruschka1
Ruediger Schmidt1
Yuriy V. Mikhaylik1
Date of Patent
December 26, 2017
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Patent Application Number
132165381
Date Filed
August 24, 2011
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Patent Citations Received
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US Patent 11990589 System and method for operating a rechargeable electrochemical cell or battery
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3
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US Patent 12068461 Systems and methods for providing, assembling, and managing integrated power bus for rechargeable electrochemical cell or battery
4
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US Patent 11658352 System and method for operating a rechargeable electrochemical cell or battery
5
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US Patent 11664527 In situ current collector
6
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US Patent 11699780 Electrically coupled electrodes, and associated articles and methods
7
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US Patent 11705554 Electrochemical cells and/or components thereof comprising nitrogen-containing species, and methods of forming them
8
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US Patent 11710828 Electrochemical devices including porous layers
9
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Patent Primary Examiner
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Stephan Essex
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Patent abstract

Electrolyte materials for use in electrochemical cells, electrochemical cells comprising the same, and methods of making such materials and cells, are generally described. In some embodiments, the materials, processes, and uses described herein relate to electrochemical cells comprising sulfur and lithium such as, for example, lithium sulfur batteries. The electrolyte can comprise a polymeric material and, in some cases, an absorbed auxiliary material. For example, the electrolyte material can be capable of forming a gel, and the auxiliary material can comprise an electrolyte solvent. In some instances, the electrolyte material can comprise at least one organic (co)polymer selected from polyethersulfones, polyvinylalcohols (PVOH) and branched polyimides (HPI). The non-fluid material in the electrolyte, when configured for use, can, alone or in combination with the optional absorbed auxiliary material, have a yield strength greater than that of lithium metal, in some embodiments.

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