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使用桥连脲配体拓宽第 4 组氢胺化催化的范围。

Broadening the scope of group 4 hydroamination catalysis using a tethered ureate ligand.

机构信息

Department of Chemistry, University of British Columbia, 2036 Main Mall, Vancouver, B.C., Canada V6T 1Z1.

出版信息

J Am Chem Soc. 2009 Dec 30;131(51):18246-7. doi: 10.1021/ja906955b.

Abstract

A broadly applicable group-4-based precatalyst for the hydroamination of primary and secondary amines was developed. Screening experiments involving a series of amide and urea proligands led to the discovery of a tethered bis(ureate) zirconium complex with unprecedented reactivity in the intermolecular hydroamination of alkynes and the intramolecular hydroamination of alkenes. This catalyst system is effective with primary and secondary amines, 1,2-disubstituted alkenes, and heteroatom-containing functional groups, including ethers, silanes, amines, and heteroaromatics. The gem-disubstituent effect is not required for cyclization. The catalyst is generally regioselective for the anti-Markovnikov product of intermolecular alkyne hydroamination, and chemoselective for hydroamination over alpha-alkylation when forming 6- and 7-membered rings from aminoalkenes.

摘要

开发了一种广泛适用于一级和二级胺氢胺化的基于第四族的前催化剂。涉及一系列酰胺和脲前配体的筛选实验导致发现了一种桥连的双(脲)锆配合物,它在炔烃的分子间氢胺化和烯烃的分子内氢胺化中具有前所未有的反应性。该催化剂体系对伯胺和仲胺、1,2-二取代烯烃以及含杂原子的官能团(包括醚、硅烷、胺和杂芳烃)有效。环化不需要偕二取代基效应。该催化剂通常对炔烃的分子间氢胺化的反 Markovnikov 产物具有区域选择性,并且在由氨基烯烃形成 6-和 7-元环时,在α-烷基化上具有选择性。

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