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首页> 外文期刊>Organic process research & development >Kinetic studies on the asymmetric transfer hydrogenation of acetophenone using a homogeneous ruthenium catalyst with a chiral amino-alcohol ligand
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Kinetic studies on the asymmetric transfer hydrogenation of acetophenone using a homogeneous ruthenium catalyst with a chiral amino-alcohol ligand

机译:使用具有手性氨基醇配体的均相钌催化剂进行苯乙酮不对称转移加氢的动力学研究

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The overall kinetics of the asymmetric transfer hydrogenation of acetophenone to 1-phenyl-ethanol using a Noyori-type homogeneous Ru-catalyst with a chiral amino-alcohol ligand ((1R, 2S)-(+)- cis-1-amino-2- indanol) were determined in a batch reactor with on-line FT-IR spectroscopy. Data analysis showed that the transfer hydrogenation is an equilibrium reaction with additional inhibition terms of both reactants and products. The rate equation is best expressed as: R-A= -(k(1)C(A)C(B) - k(-1)C(C)C(D))/ (k(1)C(A) + k(2)C(B) + k(-1)C(C) + k(-2)C(D)) where C-A, C-B, C-C, and C-D are the concentration levels of acetophenone (A), 2-propanol (B), phenyl ethanol (C), and aceton (D), repectively. The overall kinetics are in agreement with the proposed mechanism of transfer hydrogenation of ketones by Noyori. The equilibrium constant for the transfer hydrogenation was about 0.19 at T = 33 degrees C. The enantiomeric excess of the asymmetric conversion was high (ee = 0.92) and almost no reduction was observed in the course of the reaction. The kinetic data have been applied to optimise the production of enantiomerically pure 1-phenylethanol in a batch reactor setup.
机译:使用具有手性氨基醇配体((1R,2S)-(+)-cis-1-amino-2的Noyori型均相Ru催化剂,苯乙酮不对称转移氢化为1-苯基乙醇的整体动力学-茚满醇)在具有在线FT-IR光谱的间歇反应器中测定。数据分析表明,转移氢化是一种平衡反应,反应物和产物都具有附加的抑制作用。速率方程最好表示为:RA =-(k(1)C(A)C(B)-k(-1)C(C)C(D))/(k(1)C(A)+ k(2)C(B)+ k(-1)C(C)+ k(-2)C(D))其中,CA,CB,CC和CD是苯乙酮(A)的浓度水平,2-丙醇(B),苯乙醇(C)和丙酮(D)。整体动力学与由Noyori提出的酮转移氢化的机理相一致。在T = 33℃下,转移氢化的平衡常数为约0.19。不对称转化的对映体过量较高(ee = 0.92),并且在反应过程中几乎未观察到还原。动力学数据已用于优化间歇式反应器装置中对映体纯的1-苯基乙醇的生产。

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