Engineering Ultrathin Alloy Shell in Au@AuPd Core‐Shell Nanoparticles for Efficient Plasmon‐Driven Photocatalysis

Author:

Kang Eunbi1,Seo Jinho1,Park Hyewon2,Wrasman Cody J.34,Shin Jae Won5,Jo Min‐kyun1,Cargnello Matteo34,Park Jeong Young2,Lee Hyosun1ORCID

Affiliation:

1. Department of Materials Science and Engineering University of Seoul Seoul 02504 Republic of Korea

2. Department of Chemistry Korea Advanced Institute of Science and Technology (KAIST) Daejeon 34141 Republic of Korea

3. Department of Chemical Engineering Stanford University Stanford CA 94305 USA

4. SUNCAT Center for Science and Catalysis SLAC National Accelerator Laboratory Menlo Park CA 94025 USA

5. Center for Nanomaterials and Chemical Reactions Institute for Basic Science (IBS) Daejeon 34141 Republic of Korea

Abstract

AbstractBimetallic core‐shell nanoparticles (NPs) possessing a synergetic coupling of plasmonic and catalytic metals have emerged as promising prototypes for efficient plasmon‐driven photocatalysis. Here, Au@AuPd core‐shell NPs composed of Au core NP and ultrathin AuPd shell are introduced to acquire improved light utilization efficiency in photocatalytic selective oxidation. With systematical control of the composition of the ultrathin alloy shell, it reveals that the Au@AuPd core‐shell NPs with 10 at% Pd (in the single‐atom alloy regime) is an effective nanostructure capable of maximizing the quantum yield of plasmon‐induced light absorption and optimizing the surface electronic structure for catalytic reactions. This controlled system provides new insights into shell engineering for enhancing photocatalytic performance via the regulation of energy funneling processes in core‐shell nanocatalysts.

Publisher

Wiley

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