首页> 外文期刊>Journal of the American Chemical Society >Spectroscopic Determination of Hydrogenation Rates and Intermediates during Carbonyl Hydrogenation Catalyzed by Shvo's Hydroxycyclopentadienyl Diruthenium Hydride Agrees with Kinetic Modeling Based on Independently Measured Rates of Elementary Reactions
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Spectroscopic Determination of Hydrogenation Rates and Intermediates during Carbonyl Hydrogenation Catalyzed by Shvo's Hydroxycyclopentadienyl Diruthenium Hydride Agrees with Kinetic Modeling Based on Independently Measured Rates of Elementary Reactions

机译:Shvo羟基环戊二烯二氢化合钌催化的羰基加氢过程中加氢速率和中间体的光谱测定与动力学模型相符,该动力学模型基于独立测量的基本反应速率

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摘要

The catalytic hydrogenation of benzaldehyde and acetophenone with the Shvo hydrogenation catalysts were monitored by in situ IR spectroscopy in both toluene and THF. The disappearance of organic carbonyl compound and the concentrations of the ruthenium species present throughout the hydrogenation reaction were observed. The dependence of the hydrogenation rate on substrate, H_2 pressure, total ruthenium concentration, and solvent were measured. In toluene, bridging diruthenium hydride 1 was the only observable ruthenium species until nearly all of the substrate was consumed. In THF, both 1 and some monoruthenium hydride 2 were observed during the course of the hydrogenation. A full kinetic model of the hydrogenation based on rate constants for individual steps in the catalysis was developed. This kinetic model simulates the rate of carbonyl compound hydrogenation and of the amounts of ruthenium species 1 and 2 present during hydrogenations.
机译:通过Shvo氢化催化剂,通过原位红外光谱在甲苯和THF中监测苯甲醛和苯乙酮的催化氢化。观察到有机羰基化合物的消失和整个氢化反应中存在的钌种类的浓度。测量了氢化速率对底物,H_2压力,总钌浓度和溶剂的依赖性。在甲苯中,只有几乎所有的底物都被消耗掉,才能观察到桥接氢化二氢钌1。在THF中,在氢化过程中观察到1和一些氢化一钌。建立了基于速率常数的氢化反应动力学模型。该动力学模型模拟了羰基化合物氢化的速率以及氢化过程中存在的钌物种1和2的数量。

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