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不对称氮杂克莱森重排:广泛适用的五苯基二茂铁基钯环催化剂的开发

The asymmetric aza-Claisen rearrangement: development of widely applicable pentaphenylferrocenyl palladacycle catalysts.

作者信息

Fischer Daniel F, Barakat Assem, Xin Zhuo-Qun, Weiss Matthias E, Peters René

机构信息

ETH Zürich, Hönggerberg, Laboratory of Organic Chemistry, Wolfgang-Pauli-Strasse 10, 8093 Zürich, Switzerland.

出版信息

Chemistry. 2009 Sep 7;15(35):8722-41. doi: 10.1002/chem.200900712.

Abstract

Systematic studies have been performed to develop highly efficient catalysts for the asymmetric aza-Claisen rearrangement of trihaloacetimidates. Herein, we describe the stepwise development of these catalyst systems involving four different catalyst generations finally resulting in the development of a planar chiral pentaphenylferrocenyl oxazoline palladacycle. This complex is more reactive and has a broader substrate tolerance than all previously known catalyst systems for asymmetric aza-Claisen rearrangements. Our investigations also reveal that subtle changes can have a big impact on the activity. With the enhanced catalyst activity, the asymmetric aza-Claisen rearrangement has a very broad scope: the methodology not only allows the formation of highly enantioenriched primary allylic amines, but also secondary and tertiary amines; allylic amines with N-substituted quaternary stereocenters are conveniently accessible as well. The reaction conditions tolerate many important functional groups, thus providing stereoselective access to valuable functionalized building blocks, for example, for the synthesis of unnatural amino acids. Our results suggest that face-selective olefin coordination is the enantioselectivity-determining step, which is almost exclusively controlled by the element of planar chirality.

摘要

已经开展了系统研究,以开发用于三卤代乙酰亚胺酯不对称氮杂克莱森重排的高效催化剂。在此,我们描述了这些催化剂体系的逐步发展,涉及四代不同的催化剂,最终开发出一种平面手性五苯基二茂铁基恶唑啉钯环配合物。与所有先前已知的用于不对称氮杂克莱森重排的催化剂体系相比,该配合物具有更高的反应活性和更广泛的底物耐受性。我们的研究还表明,细微的变化可能对活性产生重大影响。随着催化剂活性的提高,不对称氮杂克莱森重排具有非常广泛的适用范围:该方法不仅可以形成高度对映体富集的伯烯丙基胺,还可以形成仲胺和叔胺;具有N-取代季碳立体中心的烯丙基胺也很容易获得。反应条件耐受许多重要的官能团,从而提供了立体选择性地获得有价值的官能化结构单元的途径,例如用于合成非天然氨基酸。我们的结果表明,面选择性烯烃配位是对映选择性决定步骤,这几乎完全由平面手性元素控制。

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