AuxPdy‐based Heterogeneous Nanocatalysts for Plasmon‐mediated Enhanced Catalysis under Visible Light Irradiation

Author:

Verma Priyanka1234ORCID,Mhembere Panashe M.2,Tallone Paolo56,Manzoli Maela5ORCID,Cerrato Giuseppina7,Watanabe Ryo3ORCID,Fukuhara Choji3,Raja Robert2ORCID,Yamashita Hiromi1ORCID

Affiliation:

1. Division of Materials and Manufacturing Science Graduate School of Engineering Osaka University 2-1 Yamadaoka, Suita Osaka 565-0871 Japan

2. School of Chemistry University of Southampton University Road Highfield Southampton SO17 1 BJ United Kingdom

3. Department of Applied Chemistry and Biochemical Engineering, Faculty of Engineering Shizuoka University 3-5-1, Johoku, Naka-ku Hamamatsu Shizuoka 432-8561 Japan

4. Present address: Department of Chemistry Indian Institute of Technology Delhi Hauz Khas New Delhi 110016 India

5. Department of Drug Science and Technology NIS Center and INSTM Reference Center University of Torino Via P. Giuria 9 10125 Torino Italy

6. Applied Science and Technology Department Politecnico di Torino C. so Duca degli Abruzzi 24 Torino 10129 Italy

7. Department of Chemistry University of Turin Via Pietro Giuria 7 10125 Turin Italy

Abstract

AbstractThe formation of hybrid plasmonic nanocatalysts made of Au nanoparticles (NPs) combined with catalytically active NPs has gained great attention owing to their interesting properties and efficient catalysis under visible light irradiation. However, the research on the combination of plasmonic metal NPs with unique support frameworks is still limited. In this report, the varying ratio of AuxPdy prepared by the extrusion method on the CuClP framework has been correlated to its optimized catalysis in the Suzuki‐Miyaura coupling reaction in dark and under visible light irradiation. The prepared catalysts AuxPdy/CuClP were characterized by spectroscopic techniques to understand the structural and electronic modification with different metal ratios. The presence of bimetallic NPs on the surface was confirmed by HR‐TEM measurements and [MCl4]n− species in the framework were validated by XPS, FT‐EXAFS, DR UV‐Vis‐NIR, and Raman analysis. The obtained results display the superior catalytic performance and highest plasmonic enhancement factor over Au1Pd1/CuClP under visible light irradiation, which was facilely recycled and reused for several cycles. The hot‐electron transfer mechanism has been discussed for enhanced catalysis in the plasmon‐driven Suzuki−Miyaura coupling reaction. These results are highly significant in the rational design of new plasmonic photocatalysts combined with unique support materials.

Publisher

Wiley

Subject

Materials Chemistry,Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Biomaterials

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