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US Patent 11351521 Supported core-shell bimetallic catalyst with high selectivity for propane dehydrogenation

Patent 11351521 was granted and assigned to Tianjin University on June, 2022 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Tianjin University
Tianjin University
Current Assignee
Tianjin University
Tianjin University
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
11351521
Patent Inventor Names
Weiting Cai0
Rentao Mu0
Liang Zeng0
Jinlong Gong0
Date of Patent
June 7, 2022
Patent Application Number
16604559
Date Filed
April 20, 2018
Patent Citations
‌
US Patent 10016751 Supported, bimetallic nanoparticles for selective catalysis
‌
US Patent 10454114 Method of producing stable, active and mass-producible Pt
‌
US Patent 10537881 Methods of making supported Ni/Pt bimetallic nanoparticles and Ni/Pt multilayer core-shell structures and their uses for CO2 reforming
0
Patent Primary Examiner
‌
Cam N. Nguyen
CPC Code
‌
B01J 23/892
‌
B01J 35/0046
‌
B01J 29/0333
‌
C07C 5/3337
‌
B01J 23/8906
‌
B01J 23/755
‌
B01J 23/75
‌
B01J 23/745
...

A supported core-shell bimetallic catalyst with high selectivity, and preparation method and an application thereof are provided. SBA-15 is used as support, platinum (Pt) is used as active component, 3d transition metal is used as cocatalysts. In the core-shell bimetallic catalyst formed by the 3d transition metal and Pt, in one aspect, by the addition of the 3d metal in the core, the d-band center of surface Pt atoms is down shifted, and the absorption of propylene is weakened, thereby improving the selectivity for propylene. In another aspect, the use of Pt is reduced by the addition of the 3d transition metal, improving the utilization of Pt. The catalyst is applicable in a hydrogen atmosphere, has a good effect on the preparation of propylene by propane dehydrogenation and causes high dehydrogenation activity under high temperature conditions. The total selectivity for propylene may reach 85%, which achieves high propylene selectivity.

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