All‐in‐One: Plasmonic Janus Heterostructures for Efficient Cooperative Photoredox Catalysis

Author:

Han Chuang1,Zeng Zikang1,Zhang Xiaorui1,Liang Yujun1,Kundu Bidyut Kumar2,Yuan Lan3,Tan Chang‐Long4,Zhang Yi4,Xu Yi‐Jun4ORCID

Affiliation:

1. Faculty of Materials Science and Chemistry China University of Geosciences Wuhan 430074 China

2. Department of Chemistry University of Cincinnati Cincinnati OH 45221 United States

3. School of Chemistry and Chemical Engineering Wuhan University of Science and Technology Wuhan 430081 China

4. State Key Laboratory of Photocatalysis on Energy and Environment, College of Chemistry Fuzhou University Fuzhou 350116 China

Abstract

AbstractJanus heterostructures consisting of multiple jointed components with distinct properties have gained growing interest in the photoredox catalytic field. Herein, we have developed a facile low‐temperature method to gain anisotropic one‐dimensional Au‐tipped CdS (Au−CdS) nanorods (NRs), followed by assembling Ru molecular co‐catalyst (RuN5) onto the surface of the NRs. The CdS NRs decorated with plasmonic Au nanoparticles and RuN5 complex harness the virtues of metal‐semiconductor and inorganic‐organic interface, giving directional charge transfer channels, spatially separated reaction sites, and enhanced local electric field distribution. As a result, the Au−CdS−RuN5 can act as an efficient dual‐function photocatalyst for simultaneous H2 evolution and valorization of biomass‐derived alcohols. Benefiting from the interfacial charge decoupling and selective chemical bond activation, the optimal all‐in‐one Au−CdS−RuN5 heterostructure shows greatly enhanced photoactivity and selectivity as compared to bare CdS NRs, along with a remarkable apparent quantum yield of 40.2 % at 400 nm. The structural evolution and working mechanism of the heterostructures are systematically analyzed based on experimental and computational results.

Publisher

Wiley

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