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Shape- and Size-Selective Preparation of Hectorite-Supported Ruthenium Nanoparticles for the Catalytic Hydrogenation of Benzene

机译:锂催化负载的锂蒙脱石负载钌纳米粒子的形状和尺寸选择制备

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摘要

The cationic organometallic aqua complexes formed by hydrolysis of [(CH)RuCl] in water, mainly [(CH)Ru(HO)], intercalate into white sodium hectorite, replacing the sodium cations between the anionic silicate layers. The yellow hectorite thus obtained reacts in water with molecular hydrogen (50 bar, 100 °C) to give a dark suspension containing a black hectorite in which large hexagonally shaped ruthenium nanoparticles (20–50 nm) are intercalated between the anionic silicate layers, the charges of which being balanced by hydronium cations. If the reduction with molecular hydrogen (50 bar, 100 °C) is carried out in various alcohols, spherical ruthenium nanoparticles of smaller size (3–38 nm depending on the alcohol) are obtained. In alcohols other than methanol, the reduction also works without H under reflux conditions, the alcohol itself being the reducing agent; the ruthenium nanoparticles obtained in this case are spherical and small (2–9 nm) but tend to aggregate to form clusters of nanoparticles. Whereas the ruthenium nanoparticles prepared by reduction of the yellow hectorite in refluxing alcohols without hydrogen pressure are almost inactive, the nanoparticles formed by hydrogen reduction catalyze the hydrogenation of benzene to give cyclohexane under mild conditions (50 °C) with turnover frequencies up to 6500 catalytic cycles per hour, the best solvent being ethanol.
机译:通过在水中水解[(CH)RuCl],主要是[(CH)Ru(HO)]而形成的阳离子有机金属水配合物嵌入白色锂蒙脱石中,从而取代了阴离子硅酸盐层之间的钠阳离子。如此获得的黄色锂蒙脱石在水中与分子氢(50 bar,100°C)反应,得到深色悬浮液,其中含有黑色锂蒙脱石,其中较大的六角形钌纳米颗粒(20–50 nm)插在阴离子硅酸盐层之间,电荷由水合氢阳离子平衡。如果在各种醇中进行分子氢还原(50 bar,100°C),则可获得较小尺寸的球形钌纳米颗粒(3-38 nm,取决于醇)。在甲醇以外的其他醇中,在回流条件下,还原也可在无氢的情况下进行,醇本身就是还原剂;在这种情况下获得的钌纳米粒子为球形且很小(2–9 nm),但易于聚集形成纳米粒子簇。在没有氢气压力的情况下,通过在回流的醇中还原黄色锂蒙脱石制备的钌纳米粒子几乎没有活性,而通过氢气还原形成的纳米粒子在温和的条件下(50°C)催化苯的氢化反应生成环己烷,催化转化率高达6500每小时循环数最好的溶剂是乙醇。

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