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通过等离子体重组和活化制备的TiO负载的Au-Ag等离子体纳米催化剂。

TiO-supported Au-Ag plasmonic nanocatalysts achieved by plasma restructuring and activation.

作者信息

Zhu Bin, Zhang Lu-Yao, Liu Jing-Lin, Zhang Xiao-Min, Li Xiao-Song, Zhu Ai-Min

机构信息

College of Environmental Sciences and Engineering, Dalian Maritime University, Dalian, 116026, China.

College of Environmental Sciences and Engineering, Dalian Maritime University, Dalian, 116026, China; Laboratory of Plasma Physical Chemistry, Dalian University of Technology, Dalian, 116024, China.

出版信息

J Hazard Mater. 2021 Jan 15;402:123508. doi: 10.1016/j.jhazmat.2020.123508. Epub 2020 Jul 17.

Abstract

Plasmonic Au-Ag/TiO bimetallic nanocatalyst is regarded as a promising visible-light (VL) photocatalyst due to its wide light absorption and potentially enhanced activity. For its preparation, Au precursors usually contain Cl and co-impregnation/co-deposition suffers from AgCl precipitation, and consequently Au and Ag have to be sequentially supported. However, Au and Ag species of the sequential preparation are individually isolated and difficult to be homogeneously mixed. Here we report an Au-Ag plasmonic nanocatalyst achieved by plasma restructuring and activation from the sequential preparation. The isolated cationic Au and Ag species on the sequentially-prepared Au-Ag/TiO sample are restructured to be homogeneously mixed and highly activated by O plasma, which can be partially auto-reduced to Au-Ag bimetallic nanoparticles within the induction period of a few minutes in VL photocatalytic oxidation of CO. The Au-Ag plasmonic nanocatalyst exhibits a strongly enhanced activity in the VL photocatalytic reaction. The contribution of O plasma treatment and the enhancement mechanism for the Au-Ag plasmonic nanocatalyst are disclosed.

摘要

等离子体金 - 银/二氧化钛双金属纳米催化剂因其广泛的光吸收和潜在增强的活性而被视为一种有前景的可见光(VL)光催化剂。在其制备过程中,金前驱体通常含有氯,共浸渍/共沉积会导致氯化银沉淀,因此金和银必须依次负载。然而,顺序制备的金和银物种是单独分离的,难以均匀混合。在此,我们报道了一种通过对顺序制备的样品进行等离子体重组和活化而获得的金 - 银等离子体纳米催化剂。顺序制备的金 - 银/二氧化钛样品上分离的阳离子金和银物种通过氧等离子体重组为均匀混合并高度活化,在可见光催化氧化一氧化碳的几分钟诱导期内,它们可部分自动还原为金 - 银双金属纳米颗粒。金 - 银等离子体纳米催化剂在可见光催化反应中表现出显著增强的活性。揭示了氧等离子体处理的作用以及金 - 银等离子体纳米催化剂的增强机制。

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