Institut für Organische Chemie und Makromolekulare Chemie, Universität Düsseldorf, 40225 Düsseldorf, Germany.
Chemistry. 2011 Sep 26;17(40):11243-9. doi: 10.1002/chem.201101406. Epub 2011 Aug 26.
The Tsuji-Trost protocol has been successfully employed for the allylic alkylation of preformed lactone enolates. It has been demonstrated that this Pd-catalyzed reaction can be carried out in an enantio- and diastereoselective manner. The use of additives, such as LiCl, was found to be crucial for reaching high levels of product selectivity. For one particular pair of reactants, density functional theory was used to investigate the mechanism of the nucleophilic addition. Among the five pathways considered, the reaction between an (allyl)Pd(BINAP) complex and a LiCl-lithium enolate adduct is predicted to be the most likely route for C-C bond formation. LiCl plays a key role as the connecting link between the noble metal and the enolate in the kinetically favored transition state. The computed diastereoselectivity ratio is in good agreement with the experimentally observed value.
Tsuji-Trost 协议已成功应用于预形成的内酯烯醇化物的烯丙基烷基化反应。已经证明,这种 Pd 催化反应可以以对映选择性和非对映选择性的方式进行。发现添加剂(如 LiCl)的使用对于达到高产物选择性至关重要。对于一对特定的反应物,使用密度泛函理论研究了亲核加成的反应机理。在所考虑的五条途径中,(烯丙基)Pd(BINAP)配合物与 LiCl-锂烯醇化物加合物之间的反应被预测为 C-C 键形成的最可能途径。LiCl 作为动力学有利的过渡态中贵金属和烯醇化物之间的连接物发挥关键作用。计算出的非对映选择性比值与实验观察到的值吻合良好。