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首页> 外文期刊>Materials >A New Homogeneous Catalyst for the Dehydrogenation of Dimethylamine Borane Starting with Ruthenium(III) Acetylacetonate
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A New Homogeneous Catalyst for the Dehydrogenation of Dimethylamine Borane Starting with Ruthenium(III) Acetylacetonate

机译:一种新的均相催化剂,用于乙酰丙酮钌(III)催化的二甲胺硼烷脱氢

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The catalytic activity of ruthenium(III) acetylacetonate was investigated for the first time in the dehydrogenation of dimethylamine borane. During catalytic reaction, a new ruthenium(II) species is formed in situ from the reduction of ruthenium(III) and characterized using UV-Visible, Fourier transform infrared (FTIR), 1H NMR, and mass spectroscopy. The most likely structure suggested for the ruthenium(II) species is mer-[Ru(N2Me4)3(acac)H]. Mercury poisoning experiment indicates that the catalytic dehydrogenation of dimethylamine-borane is homogeneous catalysis. The kinetics of the catalytic dehydrogenation of dimethylamine borane starting with Ru(acac)3 were studied depending on the catalyst concentration, substrate concentration and temperature. The hydrogen generation was found to be first-order with respect to catalyst concentration and zero-order regarding the substrate concentration. Evaluation of the kinetic data provides the activation parameters for the dehydrogenation reaction: the activation energy Ea = 85 ± 2 kJ·mol−1, the enthalpy of activation ∆H# = 82 ± 2 kJ·mol−1 and the entropy of activation; ∆S# = −85 ± 5 J·mol−1·K−1. The ruthenium(II) catalyst formed from the reduction of ruthenium(III) acetylacetonate provides 1700 turnovers over 100 hours in hydrogen generation from the dehydrogenation of dimethylamine borane before deactivation at 60 °C.
机译:首次研究了乙酰丙酮钌(III)在二甲胺硼烷的脱氢反应中的催化活性。在催化反应过程中,还原钌(III)原位形成了新的钌(II)物种,并使用紫外-可见,傅立叶变换红外光谱(FTIR), 1 H NMR和质量进行了表征光谱学。建议的钌(II)物种最可能的结构是mer- [Ru(N 2 Me 4 3 (acac)H] 。汞中毒实验表明,二甲胺硼烷的催化脱氢是均相催化。研究了以Ru(acac) 3 为起始原料的二甲胺硼烷催化脱氢动力学,具体取决于催化剂的浓度,底物浓度和温度。发现氢气的产生相对于催化剂浓度是第一级的,而相对于底物浓度是零级的。动力学数据的评估提供了脱氢反应的活化参数:活化能E a = 85±2 kJ·mol -1 ,活化焓∆H < sup># = 82±2 kJ·mol -1 和活化熵; ΔS# = −85±5 J·mol -1 ·K -1 。由乙酰丙酮钌(III)还原形成的钌(II)催化剂在60℃下失活之前,在二甲胺硼烷的脱氢反应中产生的氢气中,在100小时内可提供1700次转化。

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