Hubei International Scientific and Technological Cooperation Base of Pesticide and Green Synthesis, Key Laboratory of Pesticide & Chemical Biology, Ministry of Education , College of Chemistry, Central China Normal University , 152 Luoyu Road , Wuhan , Hubei 430079 , P. R. China.
State Key Laboratory of Applied Organic Chemistry , Lanzhou University , Lanzhou 730000 , P. R. China.
Org Lett. 2018 Nov 16;20(22):7278-7282. doi: 10.1021/acs.orglett.8b03189. Epub 2018 Nov 2.
A catalyst-controlled acylation reaction of β-ketoesters was developed for the first time by combining visible-light photoactivation with Lewis acid or base catalysis. By employing a NiCl·glyme complex with a bis(oxazoline) ligand as the Lewis acid catalyst, C-acylation products are exclusively achieved, while utilizing pyridine or DABCO as the Lewis base catalyst affords O-acylation products with complete regioselectivity. A range of β-ketoesters with satisfactory structural diversity were suitable for this transformation, demonstrating the functional group compatibility of the method, which was attributed to the mild reaction conditions. This success is heavily built upon the visible-light-induced Wolff rearrangement and the unique catalytic activation modes, and thus, this work significantly expands the applications of ketene chemistry.
首次开发了一种通过可见光光活化与路易斯酸或碱催化相结合的β-酮酯的催化剂控制酰化反应。通过使用 NiCl·glyme 配合物与双(恶唑啉)配体作为路易斯酸催化剂,可以获得 C-酰化产物,而使用吡啶或 DABCO 作为路易斯碱催化剂则可以以完全的区域选择性得到 O-酰化产物。一系列具有令人满意的结构多样性的β-酮酯适用于这种转化,证明了该方法的官能团相容性,这归因于温和的反应条件。这一成功主要依赖于可见光诱导的Wolff 重排和独特的催化激活模式,因此,这项工作极大地扩展了烯酮化学的应用。