Pt‐Loaded Nb─W Metal Composite Oxide for Selective Cleavage of Secondary C─O Bonds

Author:

Chen Jinghu12,Xia Qineng2,Guo Yong3ORCID,Wang Yangang2,Li Xi2,Wang Mingming1,Qiu Jieshan1,Wang Yanqin3,Sofianos Maria Veronica4,Liu Shaomin15ORCID

Affiliation:

1. State Key laboratory of Organic‐Inorganic Composites College of Chemical Engineering Beijing University of Chemical Technology Beijing 100029 China

2. College of Biological Chemical Science and Engineering Jiaxing University Jiaxing 314001 China

3. Shanghai Key Laboratory of Functional Materials Chemistry Research Institute of Industrial Catalysis School of Chemistry and Molecular Engineering East China University of Science and Technology Shanghai 200237 China

4. School of Chemical and Bioprocess Engineering University College Dublin Belfield Dublin 4 Ireland

5. State Key Laboratory of Separation Membranes and Membrane Processes Tiangong University Tianjin 3000387 China

Abstract

AbstractSelective hydrogenolysis of glycerol to 1,3‐propanediol (1,3‐PDO) is recognized as one of the most promising reactions for the valorization of biomass. Precise activation of C─O bonds of glycerol molecule is the key step to realize the high yield of catalytic conversion. Here, a Pt‐loaded Nb–W composite oxides with crystallographic shear phase for the precise activation and cleavage of secondary C─O (C(2)─O) bonds are first reported. The developed Nb14W3O44 with uniform structure possesses arrays of W–O–Nb active sites that totally distinct from individual WOx or NbOx species, which is superior to the adsorption and activation of C(2)─O bonds. The Nb14W3O44 support with rich reversible redox couples also promotes the electron feedback ability of Pt and enhances its interaction with Pt nanoparticles, resulting in high activity for H2 dissociation and hydrogenation. All these favorable factors confer the Pt/Nb14W3O44 excellent performance for selective hydrogenolysis of glycerol to 1,3‐PDO with the yield of 75.2% exceeding the record of 66%, paying the way for the commercial development of biomass conversion. The reported catalysts or approach can also be adopted to create a family of Nb–W metal composite oxides for other catalytic reactions requiring selective C─O bond activation and cleavage.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Zhejiang Province

Fundamental Research Funds for the Central Universities

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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