Supramolecular & Homogeneous Catalysis van 't Hoff Institute for Molecular Sciences, University of Amsterdam, Nieuwe Achtergracht 166, 1018 WV Amsterdam, The Netherlands.
Chemistry. 2010 Jun 11;16(22):6509-17. doi: 10.1002/chem.200903476.
The mechanism of the IndolPhos-Rh-catalyzed asymmetric hydrogenation of prochiral olefins has been investigated by means of X-ray crystal structure determination, kinetic measurements, high-pressure NMR spectroscopy, and DFT calculations. The mechanistic study indicates that the reaction follows an unsaturate/dihydride mechanism according to Michaelis-Menten kinetics. A large value of K(M) (K(M) = 5.01+/-0.16 M) is obtained, which indicates that the Rh-solvate complex is the catalyst resting state, which has been observed by high-pressure NMR spectroscopy. DFT calculations on the substrate-catalyst complexes, which are undetectable by experimental means, suggest that the major substrate-catalyst complex leads to the product. Such a mechanism is in accordance with previous studies on the mechanism of asymmetric hydrogenation reactions with C(1)-symmetric heteroditopic and monodentate ligands.
通过 X 射线晶体结构测定、动力学测量、高压 NMR 光谱和 DFT 计算,研究了 IndolPhos-Rh 催化的前手性烯烃不对称氢化的反应机理。该机理研究表明,反应遵循不饱和/二氢化物机理,符合米氏动力学。获得了较大的 K(M) 值(K(M) = 5.01+/-0.16 M),这表明 Rh-溶剂合物配合物是催化剂的休眠状态,这已通过高压 NMR 光谱观察到。通过实验手段无法检测到的底物-催化剂配合物的 DFT 计算表明,主要的底物-催化剂配合物导致产物形成。这种机制与以前使用 C(1)-对称的杂双齿和单齿配体进行的不对称氢化反应的机理研究一致。