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用于对映选择性烯烃复分解反应的高效钼基催化剂。

Highly efficient molybdenum-based catalysts for enantioselective alkene metathesis.

作者信息

Malcolmson Steven J, Meek Simon J, Sattely Elizabeth S, Schrock Richard R, Hoveyda Amir H

机构信息

Department of Chemistry, Merkert Chemistry Center, Boston College, Chestnut Hill, Massachusetts 02467, USA.

出版信息

Nature. 2008 Dec 18;456(7224):933-7. doi: 10.1038/nature07594. Epub 2008 Nov 16.

Abstract

Discovery of efficient catalysts is one of the most compelling objectives of modern chemistry. Chiral catalysts are in particularly high demand, as they facilitate synthesis of enantiomerically enriched small molecules that are critical to developments in medicine, biology and materials science. Especially noteworthy are catalysts that promote-with otherwise inaccessible efficiency and selectivity levels-reactions demonstrated to be of great utility in chemical synthesis. Here we report a class of chiral catalysts that initiate alkene metathesis with very high efficiency and enantioselectivity. Such attributes arise from structural fluxionality of the chiral catalysts and the central role that enhanced electronic factors have in the catalytic cycle. The new catalysts have a stereogenic metal centre and carry only monodentate ligands; the molybdenum-based complexes are prepared stereoselectively by a ligand exchange process involving an enantiomerically pure aryloxide, a class of ligands scarcely used in enantioselective catalysis. We demonstrate the application of the new catalysts in an enantioselective synthesis of the Aspidosperma alkaloid, quebrachamine, through an alkene metathesis reaction that cannot be promoted by any of the previously reported chiral catalysts.

摘要

发现高效催化剂是现代化学最引人注目的目标之一。手性催化剂的需求尤其迫切,因为它们有助于合成对医学、生物学和材料科学发展至关重要的对映体富集小分子。特别值得注意的是那些能够以其他难以达到的效率和选择性水平促进化学合成中具有重要用途的反应的催化剂。在此,我们报道了一类能够以非常高的效率和对映选择性引发烯烃复分解反应的手性催化剂。这些特性源于手性催化剂的结构流动性以及增强的电子因素在催化循环中所起的核心作用。新型催化剂具有一个手性金属中心,仅带有单齿配体;基于钼的配合物通过涉及对映体纯芳氧基化物的配体交换过程立体选择性地制备,芳氧基化物是一类在手性选择性催化中很少使用的配体。我们通过烯烃复分解反应证明了新型催化剂在对映选择性合成阿西多斯佩马生物碱克布拉查明中的应用,而该反应无法由任何先前报道的手性催化剂促进。

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