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US Patent 11524280 Low-platinum catalyst based on nitride nanoparticles and preparation method thereof

Patent 11524280 was granted and assigned to South China University of Technology on December, 2022 by the United States Patent and Trademark Office.

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Patent
Patent
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Patent attributes

Current Assignee
South China University of Technology
South China University of Technology
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
115242800
Patent Inventor Names
Rong Chen0
Xinlong Tian0
Shijun Liao0
Junming Luo0
Date of Patent
December 13, 2022
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Patent Application Number
167268360
Date Filed
December 25, 2019
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Patent Citations Received
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US Patent 12071696 Platinum oxide nanoparticles for electrochemical hydrogen evolution and methods for making and using the same
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Patent Primary Examiner
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Patricia L. Hailey
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CPC Code
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B82Y 30/00
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B82Y 40/00
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H01M 4/8853
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B01J 37/0072
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B01J 23/42
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B01J 27/24
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B01J 37/348
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H01M 4/926
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The present invention discloses a low-platinum catalyst based on nitride nanoparticles and a preparation method thereof. A component of an active metal of the catalyst directly clades on a surface of nitride particles or a surface of nitride particles loaded on a carbon support in an ultrathin atomic layer form. Preparation steps including: preparing a transition-metal ammonia complex first, nitriding the obtained ammonia complex solid under an atmosphere of ammonia gas to obtain nitride nanoparticles; loading the nitride nanoparticles on a surface of a working electrode, depositing an active component on a surface of the nitride nanoparticles by pulsed deposition, to obtain the low platinum loading catalyst using a nitride as a substrate. The catalyst may be used as an anode or a cathode catalyst of a low temperature fuel cell, has very high catalytic activity and stability, can greatly reduce a usage amount of a precious metal in the fuel cell, and greatly reduces a cost of the fuel cell. The present invention has important characteristics of being controllable in deposition amount, simple and convenient to operate, free of protection of inert atmosphere, and etc., and is suitable for large-scale industrial production.

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