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Homogeneous Catalytic Formic Acid Dehydrogenation in Aqueous Solution using Ruthenium Arene Phosphine Catalysts

机译:使用钌芳烃催化剂的水溶液中均相催化甲酸脱氢

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摘要

> In this work, we studied catalytic formic acid dehydrogenation with a homogeneous RAPTA type precatalyst in aqueous solution. The effects of an amino group, attached to the arene, and the impact of a second equivalent of 1,3,5‐triaza‐7‐phosphaadamantane (PTA) added in situ to the reaction were evaluated. The initial compound, [(η 6 ‐benzyldimethylamine)Ru(PTA)Cl 2 ]Cl ( 3 ), was synthesized and proved to be moderately active for selective formic acid dehydrogenation. The addition of a second equivalent of PTA at the beginning of the reaction significantly improved the catalytic performance. The activation energies for both catalytic systems were assessed via an Arrhenius plot. 1 H ‐and 13 C‐NMR spectroscopy was used to follow the course of the reaction online and verified complete consumption of substrate. A triplet signal was observed in the hydride region along with its corresponding coupling counterpart in 31 P spectra.
机译:

在这项工作中,我们在水溶液中使用均匀Rapta型预催化剂研究了催化甲酸脱氢。评价氨基连接到芳烃的效果,以及将原位加入反应的1,3,5-Triaza-7-磷酰胺(PTA)的第二当量的影响。初始化合物[(η 6 -benzydimethylamine)ru(pta)cl 2 ] cl( 3 ),并证明是适度活性选择性甲酸脱氢。在反应开始时添加第二当量的PTA显着提高了催化性能。通过Arrhenius图评估两个催化系统的活化能量。 1 h-和 13 c-nmr光谱用于遵循在线反应过程并验证基板的完全消耗。在氢化物区域中观察到三重态信号以及其相应的耦合对应物,在 31/11 p光谱中。

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