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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Au-Rh and Au-Pd nanocatalysts supported on rutile titania nanorods: structure and chemical stability
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Au-Rh and Au-Pd nanocatalysts supported on rutile titania nanorods: structure and chemical stability

机译:金红石型二氧化钛纳米棒上负载的Au-Rh和Au-Pd纳米催化剂:结构和化学稳定性

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摘要

Au, Rh, Pd, Au-Rh and Au-Pd nanoparticles (NPs) were synthesized by colloidal chemical reduction and immobilized on hydrothermally-prepared rutile titania nanorods. The catalysts were characterized by aberration-corrected TEM/STEM, XPS, and FTIR, and were evaluated in the hydrogenation of tetralin in the presence of H2S. Oxidizing and reducing thermal treatments were employed to remove the polyvinyl alcohol (PVA) surfactant. Reduction in H-2 at 350 degrees C was found efficient for removing the PVA while preserving the size (ca. 3 nm), shape and bimetallic nature of the NPs. While Au-Pd NPs are alloyed at the atomic scale, Au-Rh NPs contain randomly distributed single-phase domains. Calcination-reduction of Au-Rh NPs mostly leads to separated Au and Rh NPs, while pre-reduction generates a well-defined segregated structure with Rh located at the interface between Au and TiO2 and possibly present around the NPs as a thin overlayer. Both the titania support and gold increase the resistance of Rh and Pd to oxidation. Furthermore, although detrimental to tetralin hydrogenation initial activity, gold stabilizes the NPs against surface sulfidation in the presence of 50 ppm H2S, leading to increased catalytic performances of the Au-Rh and Au-Pd systems as compared to their Rh and Pd counterparts.
机译:通过胶体化学还原合成Au,Rh,Pd,Au-Rh和Au-Pd纳米颗粒(NPs),并将其固定在水热制备的金红石型二氧化钛纳米棒上。通过像差校正的TEM / STEM,XPS和FTIR对催化剂进行表征,并在H2S存在下氢化四氢化萘进行评估。氧化和还原热处理用于去除聚乙烯醇(PVA)表面活性剂。发现在350℃下H-2的还原可有效去除PVA,同时保留NP的尺寸(约3 nm),形状和双金属性质。尽管Au-Pd NP在原子尺度上合金化,但Au-Rh NP包含随机分布的单相域。 Au-Rh NP的煅烧还原大多会导致Au和Rh NP分离,而预还原可生成定义明确的分离结构,其中Rh位于Au和TiO2之间的界面,并可能以薄的覆盖层存在于NPs周围。二氧化钛载体和金都增加了Rh和Pd的抗氧化性。而且,尽管金对四氢萘氢化的初始活性是有害的,但是金在50ppm H 2 S的存在下稳定了NP对表面硫化的作用,与Rh和Pd对应物相比,导致Au-Rh和Au-Pd体系的催化性能提高。

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