Department of Chemistry, University College London, 20 Gordon Street, London, United Kingdom WC1H 0AJ.
Dalton Trans. 2012 Feb 14;41(6):1867-77. doi: 10.1039/c1dt11244a. Epub 2011 Dec 14.
Density functional theory calculations have been used to investigate the hydrogenation of acetophenone (ACP) catalysed by the RuH(2)(diphosphine)(diamine) complexes with emphasis on the effect of the structure of the diphosphine and diamine ligands on the enantioselectivity. The computed reaction coordinate diagrams of RuH(2)(diphosphine)[(S,S)-DPEN] catalysed reactions with different (S)-diphosphine ligands (XylBINAP, TolBINAP, and BINAP) show that the presence of two methyl groups in the meta position is critical to obtaining a high difference in activation energy for the reaction pathways associated with the (R)- and (S)-alcohols, and consequently high enantioselectivity. The effect of the diamine structure while keeping the TolBINAP and XylBINAP fixed has also been analysed. To enhance the enantioselectivity of the TolBINAP system, the addition of two methyl groups and the removal of a phenyl group of the diamine (DMAPEN) offer the necessary steric interactions. We conclude by reporting a correlation between the enantiomeric excess and the difference in the computed activation energies of the two most favourable (S) and (R) reaction pathways, which shows that the computational procedure adopted could be used to predict the enantiomeric excess of ketone hydrogenation reactions catalysed by the Noyori-type catalysts, and assist in the choice of ligand when optimising the enantiomeric excess.
已使用密度泛函理论计算研究了由 RuH(2)(二膦)(二胺)配合物催化的苯乙酮 (ACP) 的加氢反应,重点研究了二膦和二胺配体结构对对映选择性的影响。计算得到的 RuH(2)(二膦)[(S,S)-DPEN]催化反应的反应坐标图显示,当 (S)-二膦配体 (XylBINAP、TolBINAP 和 BINAP) 中存在两个甲基处于间位时,对于获得与 (R)-和 (S)-醇相关的反应途径的活化能差异非常重要,从而获得高对映选择性。同时分析了保持 TolBINAP 和 XylBINAP 不变时二胺结构的影响。为了提高 TolBINAP 体系的对映选择性,添加两个甲基并去除二胺 (DMAPEN) 的一个苯基提供了必要的空间相互作用。我们通过报告计算得到的两种最有利的 (S) 和 (R) 反应途径的活化能差异与对映过量之间的相关性得出结论,这表明采用的计算程序可用于预测由 Noyori 型催化剂催化的酮加氢反应的对映过量,并在优化对映过量时协助选择配体。