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首页> 外文期刊>Nanoscale >Gold and gold-palladium alloy nanoparticles on heterostructured TiO2 nanobelts as plasmonic photocatalysts for benzyl alcohol oxidation
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Gold and gold-palladium alloy nanoparticles on heterostructured TiO2 nanobelts as plasmonic photocatalysts for benzyl alcohol oxidation

机译:异质结构TIO2纳米元素上的金和金 - 甲基合金纳米颗粒作为苄醇氧化的等离子光催化剂

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Plasmonic photocatalysts composed of Au and bimetallic Au-Pd alloy nanoparticles (NPs) on one-dimensional TiO2 nanobelts (TiO2-NBs) were used for the aerobic oxidation of benzyl alcohol under visible light irradiation. Remarkable light-promoted activity was observed for the as-synthesized M/TiO2-NB (M = Au, Au-Pd) nanostructures based on the TiO2(B)/anatase heterostructured nanobelt. The difference in band structure and the well matched interface between the TiO2(B) and anatase phases, coupled with the one-dimensional nanostructure, enable an enhanced charge transfer within the heterostructured nanobelt. This inter-phase charge transfer greatly facilitates the flow of hot electrons from the metal NPs to TiO2 and promotes benzyl alcohol oxidation. This efficient electron transfer was identified by the much higher photocurrent response measured for the Au/TiO2-NB nanostructure with the TiO2(B)/anatase heterojunction than those with either of the single phases under visible light irradiation. Alloying Au with Pd in Au-Pd/TiO2-NB results in a significant improvement in the visible light-promoted activity compared to the monometallic Au/TiO2-NB sample. It is supposed that the plasmon-mediated charge distribution within the alloy NPs is mainly responsible for the enhanced photocatalytic activity of the bimetallic nanostructures.
机译:由Au和双金属AU-PD合金纳米颗粒(NP)组成的等离子光催化剂在一维TIO2纳米核能(TiO2-NBS)上用于可见光光辐射下的有氧氧化。基于TIO2(b)/Aratase异质结构的纳米生物的AS合成M/TiO2-Nb(M = AU,AU-PD)纳米结构观察到了显着的光促进活性。 TiO2(b)和解剖相之间的带结构和匹配良好的界面的差异与一维纳米结构相结合,可以在异质结构的纳米BELT内实现增强的电荷转移。这种相之间的电荷转移极大地促进了热电子从金属NP到TIO2的流动,并促进了苄醇氧化。通过使用可见光光照射下的单个相位的tiO2(b)/解剖酶异质结,该有效的电子转移通过对具有TIO2(b)/解剖酶异质结的AU/TIO2-NB纳米结构测得的更高的光电流响应来鉴定。与单金属AU/TIO2-NB样品相比,在AU-PD/TIO2-NB中与PD合金合金可见光的光促进活性显着改善。据认为,合金NP中的等离子介导的电荷分布主要负责双金属纳米结构的增强光催化活性。

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