Key Laboratory of Organosilicon Chemistry and Material Technology of Ministry of Education, and Key Laboratory of Organosilicon Material Technology of Zhejiang Province, Hangzhou Normal University, No. 2318, Yuhangtang Road, 311121, Hangzhou, PR China.
Leibniz-Institute for Catalysis, Albert-Einstein-Str. 29a, 18059, Rostock, Germany.
Nat Commun. 2020 Oct 23;11(1):5383. doi: 10.1038/s41467-020-19110-3.
There is a continuous need for designing new and improved synthetic methods aiming at minimizing reaction steps while increasing molecular complexity. In this respect, catalytic, one-pot cascade methodologies constitute an ideal tool for the construction of complex molecules with high chemo-, regio-, and stereoselectivity. Herein, we describe two general and efficient cascade procedures for the synthesis of spiro-fused heterocylces. This transformation combines selective nucleophilic substitution (S2'), palladium-catalyzed Heck and C-H activation reactions in a cascade manner. The use of allylic ammonium salts and specific Pd catalysts are key to the success of the transformations. The synthetic utility of these methodologies is showcased by the preparation of 48 spiro-fused dihydrobenzofuranes and indolines including a variety of fluorinated derivatives.
人们一直需要设计新的和改进的合成方法,旨在尽量减少反应步骤,同时提高分子复杂性。在这方面,催化的一锅多步级联方法是构建具有高化学选择性、区域选择性和立体选择性的复杂分子的理想工具。在此,我们描述了两种用于合成螺稠合杂环的通用且高效的级联方法。这种转化以级联的方式结合了选择性亲核取代(S2')、钯催化的Heck 和 C-H 活化反应。烯丙基铵盐和特定的 Pd 催化剂的使用是转化成功的关键。这些方法的合成实用性通过制备 48 个螺稠合二氢苯并呋喃和吲哚啉(包括各种氟化衍生物)得到了展示。