Malkov Andrei V, Gouriou Laure, Lloyd-Jones Guy C, Starý Ivo, Langer Vratislav, Spoor Paul, Vinader Victoria, Kocovský Pavel
Department of Chemistry, WestCHEM, Joseph Black Building, University of Glasgow, Glasgow G12 8QQ, UK.
Chemistry. 2006 Sep 6;12(26):6910-29. doi: 10.1002/chem.200501574.
Application of new chiral ligands (R)-(-)-12 a and (S)-(+)-12 c (VALDY), derived from amino acids, to the title reaction, involving cinnamyl (linear) and isocinnamyl (branched) type substrates (4 and 5 --> 6), led to excellent regio- and enantioselectivities (>30:1, < or =98 % ee), showing that ligands with a single chiral center are capable of high asymmetric induction. The structural requirements of the ligand and the mechanism are discussed. The application of single enantiomers of deuterium-labeled substrates (both linear 38 c and branched 37 c) and analysis of the products (41-43) by (2)H{(1)H} NMR spectroscopy in a chiral liquid crystal matrix allowed the stereochemical pathways of the reaction to be distinguished. With ligand (S)-(+)-12 c, the matched enantiomer of branched substrate was found to be (S)-5, which was converted into (R)-6 with very high regio- and stereoselectivity via a process that involves net retention of stereochemistry. The mismatched enantiomer of the branched substrate was found to be (R)-5, which was also converted into (R)-6, that is, with apparent net inversion, but at a lower rate and with lower overall enantioselectivity. This latter feature, which may be termed a "memory effect", reduced the global enantioselectivity in the reaction of the racemic substrate (+/-)-5. The stereochemical pathway of the mismatched manifold has been shown also to be one of net retention, the apparent inversion occurring through equilibration via an Mo-allyl intermediate prior to nucleophilic attack. Incomplete equilibration leads to the memory effect and thus to lower enantioselectivity. Analysis of the mismatched manifold over the course of the reaction revealed that the memory effect is progressively attenuated with the nascent global selectivity increasing substantially as the reaction proceeds. The origin of this effect is suggested to be the depletion of CO sources in the reaction mixture, which attenuates turnover rate and thus facilitates greater equilibrium. The linear substrate was also converted into the branched product with net syn stereochemistry, as shown by isotopic labeling. An analogous process operates in the generation of small quantities of linear product from branched substrate.
将源自氨基酸的新型手性配体(R)-(-)-12 a和(S)-(+)-12 c(VALDY)应用于涉及肉桂基(直链)和异肉桂基(支链)型底物(4和5→6)的标题反应中,得到了优异的区域选择性和对映选择性(>30:1,≤98% ee),表明具有单个手性中心的配体能够实现高不对称诱导。讨论了配体的结构要求和反应机理。使用氘标记底物的单一对映体(直链38 c和支链37 c),并在手性液晶基质中通过2H{1H} NMR光谱分析产物(41 - 43),从而区分反应的立体化学途径。对于配体(S)-(+)-12 c,发现支链底物的匹配对映体是(S)-5,它通过一个涉及立体化学净保留的过程以非常高的区域选择性和立体选择性转化为(R)-6。支链底物的不匹配对映体是(R)-5,它也转化为(R)-6,即明显发生了净构型翻转,但速率较低且整体对映选择性较低。后一种特征可称为“记忆效应”,它降低了外消旋底物(±)-5反应中的整体对映选择性。不匹配反应途径的立体化学途径也已表明是净保留,明显的构型翻转是通过亲核攻击之前经由钼 - 烯丙基中间体的平衡而发生的。不完全平衡导致记忆效应,从而降低对映选择性。对反应过程中不匹配反应途径的分析表明,随着反应进行,新生的整体选择性大幅增加,记忆效应逐渐减弱。这种效应的起源被认为是反应混合物中CO源的消耗,这降低了周转速率,从而促进了更大程度的平衡。如同位素标记所示,直链底物也以净顺式立体化学转化为支链产物。从支链底物生成少量直链产物的过程中也存在类似的过程。