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Influence of Support Hydroxides on the Catalytic Activity of Oxidized Gold Clusters

机译:载体氢氧化物对氧化金团簇催化活性的影响

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摘要

Gold oxide nanoparticles were prepared on the native surface and a hydroxylated surface of a nonporous TiO2 support (Degussa P25). Scanning transmission electron microscopy shows the formation of similarly sized clusters on both support materials (1.86 and 1.61 nm clusters on the native oxide and the hydroxylated oxide respectively). X-ray absorption near-edge spectroscopy and X-ray photoelectron spectroscopy clearly indicate the formation of Au~(3+)-rich oxide nanoparticles. Despite the similar cluster sizes and oxidation states, the gold oxide clusters grown on the hydroxylated surface were at least 180 times more catalytically active for the oxidation of carbon monoxide than those grown on the native oxide surface. Thus hydroxides, which are incidentally introduced during the solution-phase synthesis of gold catalysts, appear to play a dominant, but previously largely unrecognized, role in the catalytic properties of both oxidized and metallic gold particles.
机译:在无孔TiO2载体(Degussa P25)的天然表面和羟基化表面上制备了氧化金纳米颗粒。扫描透射电子显微镜显示在两种载体材料上形成相似大小的簇(分别在天然氧化物和羟基氧化物上形成1.86和1.61nm簇)。 X射线吸收近边缘光谱和X射线光电子能谱清楚地表明富含Au〜(3+)的氧化物纳米粒子的形成。尽管簇尺寸和氧化态相似,但是在羟基化表面上生长的金氧化物簇对一氧化碳的氧化的催化活性至少是在天然氧化物表面上生长的金氧化物簇的至少180倍。因此,在金催化剂的溶液相合成过程中偶然引入的氢氧化物似乎在氧化的金颗粒和金属的金颗粒的催化性质中起主要作用,但以前很大程度上未被认识。

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