Department of Chemistry, Texas A & M University, Box 30012, College Station, Texas 77841, USA.
J Org Chem. 2011 Sep 16;76(18):7449-57. doi: 10.1021/jo201215c. Epub 2011 Aug 18.
This project was undertaken to demonstrate the potential of asymmetric hydrogenations mediated by the chiral, carbene-oxazoline analogue of Crabtree's catalyst "cat" in asymmetric hydrogenations of allylic amine derivatives of amino acids. Peripheral features of the substrates (protecting groups, functional groups related by redox processes, and alkene geometries) were varied to optimize the stereochemical vectors exerted by the substrate and align them with the catalyst vector. N-Acetyl-protected, O-TBDPS-protected allylic substrates 9a-e emerged as the best for this reaction; syn-products were formed from the E-alkenes, while the Z-isomers gave anti-target materials, both with high diastereoselectivities. This study featured asymmetric catalysis to elaborate optically active substrates into more stereochemically complex chirons; we suggest that the approach used, optimization of stereocontrol by varying peripheral aspects of the substrate, tends to be easier than de novo catalyst design for each substrate type. In other words, optimization of the substrate vector is likely to be more facile than enhancement of the catalyst vector via ligand modifications.
本项目旨在展示手性卡宾-恶唑啉类似物介导的不对称氢化在氨基酸烯丙基胺衍生物的不对称氢化中的潜力。通过改变底物的外围特征(保护基、通过氧化还原过程相关的官能团和烯烃几何形状)来优化底物施加的立体化学向量,并使其与催化剂向量对齐。N-乙酰基保护、O-TBDPS 保护的烯丙基底物 9a-e 是该反应的最佳选择;E-烯烃形成顺式产物,而 Z-异构体则生成反式目标材料,两者都具有很高的非对映选择性。本研究采用不对称催化将光学活性底物精心构建成更具立体化学复杂性的手性化合物;我们认为,通过改变底物的外围方面来优化立体控制的方法比针对每种底物类型进行从头设计催化剂更容易。换句话说,通过配体修饰增强催化剂向量可能不如通过优化底物向量更容易。