van Putten Robbert, Filonenko Georgy A, Gonzalez de Castro Angela, Liu Chong, Weber Manuela, Müller Christian, Lefort Laurent, Pidko Evgeny
Inorganic Systems Engineering Group, Department of Chemical Engineering, Faculty of Applied Sciences, Delft University of Technology, Van der Maasweg 9, 2629 HZ, Delft, The Netherlands.
InnoSyn B.V, Urmonderbaan 22, 6167 RD, Geleen, The Netherlands.
Organometallics. 2019 Aug 26;38(16):3187-3196. doi: 10.1021/acs.organomet.9b00457. Epub 2019 Aug 15.
The catalytic asymmetric transfer hydrogenation (ATH) of ketones is a powerful methodology for the practical and efficient installation of chiral centers. Herein, we describe the synthesis, characterization, and catalytic application of a series of manganese complexes bearing simple chiral diamine ligands. We performed an extensive experimental and computational mechanistic study and present the first detailed experimental kinetic study of Mn-catalyzed ATH. We demonstrate that conventional mechanistic approaches toward catalyst optimization fail and how apparently different precatalysts lead to identical intermediates and thus catalytic performance. Ultimately, the Mn-N,N complexes under study enable quantitative ATH of acetophenones to the corresponding chiral alcohols with 75-87% ee.
酮的催化不对称转移氢化(ATH)是一种用于实际高效安装手性中心的强大方法。在此,我们描述了一系列带有简单手性二胺配体的锰配合物的合成、表征及催化应用。我们进行了广泛的实验和计算机理研究,并首次对锰催化的ATH进行了详细的实验动力学研究。我们证明了传统的催化剂优化机理方法是失败的,以及看似不同的预催化剂如何导致相同的中间体,进而具有相同的催化性能。最终,所研究的锰 - N,N配合物能够将苯乙酮定量地不对称转移氢化为相应的手性醇,对映体过量值(ee)为75 - 87%。