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US Patent 10593985 Amorphous cathode material for battery device

Patent 10593985 was granted and assigned to Sakti3 on March, 2020 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Sakti3
Sakti3
Current Assignee
Sakti3
Sakti3
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10593985
Date of Patent
March 17, 2020
Patent Application Number
15487353
Date Filed
April 13, 2017
Patent Citations Received
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US Patent 11855278 Microcomposite alloy structure
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US Patent 11963287 Systems, devices, and methods for starting plasma
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US Patent 11919071 Systems and methods for synthesis of spheroidized metal powders
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US Patent 12094688 Plasma apparatus and methods for processing feed material utilizing a powder ingress preventor (PIP)
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0
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US Patent 11590568 Process for producing spheroidized powder from feedstock materials
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US Patent 11633785 Mechanically alloyed powder feedstock
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US Patent 11839919 Spheroidal dehydrogenated metals and metal alloy particles
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Patent Primary Examiner
‌
Scott J Chmielecki
Patent abstract

A method of fabricating a multilayered thin film solid state battery device. The method steps include, but are not limited to, the forming of the following layers: substrate member, a barrier material, a first electrode material, a thickness of cathode material, an electrolyte, an anode material, and a second electrode material. The formation of the barrier material can include forming a polymer material being configured to substantially block a migration of an active metal species to the substrate member, and being characterized by a barrier degrading temperature. The formation of cathode material can include forming a cathode material having an amorphous characteristic, while maintaining a temperature of about −40 Degrees Celsius to no greater than 500 Degrees Celsius such that a spatial volume is characterized by an external border region of the cathode material. The method can then involve transferring the resulting thin film solid state battery device.

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