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Ruthenium Nanoparticles Intercalated in Hectorite: A Reusable Hydrogenation Catalyst for Benzene and Toluene

机译:嵌入锂蒙脱石中的钌纳米粒子:苯和甲苯的可重复使用的加氢催化剂

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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 sodium hectorite by ion exchange, replacing the sodium cations between the anionic silicate layers. The yellow hectorite thus obtained reacts in ethanol with molecular hydrogen (50 bar, 100°C) with decomposition of the organometallic aqua complexes to give a black material, in which ruthenium(0) nanoparticles (9–18 nm) are intercalated between the anionic silicate layers, the charges of which being balanced by hydronium cations. The black ruthenium-modified hectorite efficiently catalyses the hydrogenation of benzene and toluene in ethanol (50 bar H, 50°C), the turnover frequencies attaining 7000 catalytic cycles per hour.
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通过离子交换嵌入锂蒙脱石钠中,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乙醇中与分子氢(50 bar,100°C)反应,有机金属水配合物分解,得到黑色物质,其中钌(0)纳米粒子(9–18 nm)插入阴离子之间硅酸盐层,其电荷由水合氢阳离子平衡。黑色钌改性的锂蒙脱石可有效催化乙醇(50 bar H,50°C)中苯和甲苯的氢化反应,周转频率达到每小时7000个催化循环。

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