Coeffard Vincent, Müller-Bunz Helge, Guiry Patrick J
Centre for Synthesis and Chemical Biology, Conway Institute of Biomolecular Research, School of Chemistry and Chemical Biology, University College Dublin, Belfield, Dublin 4, Ireland.
Org Biomol Chem. 2009 Apr 21;7(8):1723-34. doi: 10.1039/b822580j. Epub 2009 Mar 12.
The straightforward preparation of new modular oxazoline-containing bifunctional catalysts is reported employing a microwave-assisted Buchwald-Hartwig aryl amination as the key step. Covalent attachment of 2-(o-aminophenyl)oxazolines and pyridine derivatives generated in good-to-high yields a series of ligands in two or three steps in which each part was altered independently to tune the activity and the selectivity of the corresponding catalysts. These catalysts prepared in situ were subsequently applied in the asymmetric addition of diethylzinc to various aldehydes, producing the corresponding alcohols with enantioselectivities of up to 68%. A transition state model, based on relevant X-ray crystal structures, has also been proposed to explain the observed stereoselectivities.
报道了一种新型含恶唑啉双功能催化剂的简便制备方法,该方法采用微波辅助的布赫瓦尔德-哈特维希芳基胺化反应作为关键步骤。以良好至高产率通过共价连接2-(邻氨基苯基)恶唑啉和吡啶衍生物,在两到三步中生成了一系列配体,其中每个部分可独立改变以调节相应催化剂的活性和选择性。随后将原位制备的这些催化剂应用于二乙基锌对各种醛的不对称加成反应,生成对映选择性高达68%的相应醇。还基于相关的X射线晶体结构提出了一个过渡态模型来解释观察到的立体选择性。