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Pulsed laser synthesis of highly active Ag–Rh and Ag–Pt antenna–reactor-type plasmonic catalysts

机译:高活性Ag–Rh和Ag–Pt天线反应器型等离子体激元的脉冲激光合成

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摘要

Ag, Pt, and Rh monometallic colloids were produced via laser ablation. Separate Ag–Rh and Ag–Pt heterostructures were formed by mixing and resulted in groupings of Rh/Pt nanoparticles adsorbing to the concavities of the larger Ag nanostructures. The 400 nm Ag plasmonic absorption peak was slightly blue-shifted for Ag–Pt and red-shifted for Ag–Rh heterostructures. Catalytic activity for the reduction of 4-nitrophenol increased significantly for Ag–Pt and Ag–Rh compared to the monometallic constituents, and persisted at lower loading ratios and consecutive reduction cycles. The enhancement is attributed to the Rh and Pt nanoparticles forming antenna–reactor-type plasmonic catalysts with the Ag nanostructures.
机译:Ag,Pt和Rh单金属胶体是通过激光烧蚀产生的。通过混合形成单独的Ag–Rh和Ag–Pt异质结构,并导致Rh / Pt纳米颗粒成组吸附到较大的Ag纳米结构的凹腔中。对于Ag–Pt,400 nm Ag等离子体吸收峰略微蓝移,对于Ag–Rh异质结构,其红移。与单金属成分相比,Ag-Pt和Ag-Rh的还原4-硝基苯酚的催化活性显着提高,并在较低的负载比和连续的还原周期下保持。增强归因于Rh和Pt纳米颗粒形成具有Ag纳米结构的天线反应器型等离子体激元催化剂。

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