Qiu Shaotong, Gao Xiang, Zhu Shifa
Key Lab of Functional Molecular Engineering of Guangdong Province, School of Chemistry and Chemical Engineering, South China University of Technology Guangzhou 510640 P. R. China
Guangdong Youmei Institute of Intelligent Bio-manufacturing Co., Ltd China.
Chem Sci. 2021 Sep 29;12(41):13730-13736. doi: 10.1039/d1sc04961e. eCollection 2021 Oct 27.
Described herein is a dirhodium(ii)-catalyzed asymmetric cycloisomerization reaction of azaenyne through a cap-tether synergistic modulation strategy, which represents the first catalytic asymmetric cycloisomerization of azaenyne. This reaction is highly challenging because of its inherent strong background reaction leading to racemate formation and the high capability of coordination of the nitrogen atom resulting in catalyst deactivation. Varieties of centrally chiral isoindazole derivatives could be prepared in up to 99 : 1 d.r., 99 : 1 er and 99% yield and diverse enantiomerically enriched atropisomers bearing two five-membered heteroaryls have been accessed by using an oxidative central-to-axial chirality transfer strategy. The tethered nitrogen atom incorporated into the starting materials enabled easy late-modifications of the centrally and axially chiral products C-H functionalizations, which further demonstrated the appealing synthetic utilities of this powerful asymmetric cyclization.
本文描述了一种通过帽-连接子协同调控策略实现的二铑(II)催化的氮杂烯炔不对称环异构化反应,这是首例氮杂烯炔的催化不对称环异构化反应。由于其固有的导致外消旋体形成的强烈背景反应以及氮原子的高配位能力导致催化剂失活,该反应极具挑战性。通过使用氧化中心到轴向手性转移策略,可以制备高达99:1的非对映选择性、99:1的对映选择性和99%产率的各种中心手性异吲哚衍生物,并且可以获得带有两个五元杂芳基的多种对映体富集的阻转异构体。引入起始原料中的连接氮原子使得中心手性和轴向手性产物的后期修饰(C-H官能化)变得容易,这进一步证明了这种强大的不对称环化反应具有吸引人的合成效用。