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Atomic-scale insight into the structural effect of a supported Au catalyst based on a size-distribution analysis using Cs-STEM and morphological image-processing

机译:基于CS-茎和形态学图像处理的尺寸分布分析,原子尺度深入了解支持的Au催化剂的结构效果

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摘要

Alumina-supported gold catalysts (Au/Al2O3) prepared under various conditions were observed on an atomic scale using aberration-corrected scanning transmission electron microscopy (Cs-STEM). The Au particles, including single Au atoms, on Cs-STEM images were extracted using morphological image processing, and the size distributions for reaction site candidates, such as the corner, edge, and surface of Au clusters, in a unit weight of Au/Al2O3 catalyst were calculated. Based on the size distributions for these reaction site candidates, we inspected the effective sites and sizes of Au catalysts for the hydrogenation of aldehydes (5-hydroxymethylfurfural and benzaldehyde) and a nitro compound (nitrobenzene). The results suggested that the corner atoms are a key site for the hydrogenation of aldehydes and the nitro compound because the dissociative adsorption of H-2 on corner atoms controls the reaction rate. Meanwhile, the effective size for the aldehydes was smaller than that for the nitro compound due to their different adsorption sites: while the aldehydes are adsorbed on the corners of Au clusters, the nitro group is adsorbed on their edges. The adsorption of the reactants was supported by reaction kinetics and X-ray absorption spectroscopy analyses. The specific active size for hydrogenation reactions was also investigated based on the size distributions. (C) 2015 Elsevier Inc. All rights reserved.
机译:使用像差校正的扫描透射电子显微镜(CS-茎)在原子尺度上观察在各种条件下制备的氧化铝载体的金催化剂(Au / Al2O3)。使用形态图像处理提取CS-STEM图像的Au颗粒,包括单个Au原子,以及用于反应位点候选的尺寸分布,例如Au簇的拐角,边缘和表面,在Au /计算Al 2O 3催化剂。基于这些反应部位候选者的尺寸分布,我们检查了醛催化剂的有效位点和大小,用于醛(5-羟甲基糠醛和苯甲醛)和硝基化合物(硝基苯)。结果表明,角原子是醛和硝基化合物的氢化的关键位点,因为H-2对角原子的离防吸附控制反应速率。同时,由于其不同的吸附位点,醛的有效尺寸小于硝基化合物的尺寸:虽然醛吸附在Au簇的角落上,但硝基吸附在其边缘上。反应物的吸附得到反应动力学和X射线吸收光谱分析。还基于尺寸分布研究了氢化反应的比尺寸。 (c)2015 Elsevier Inc.保留所有权利。

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