College of Pharmaceutical Sciences, Zhejiang University, 866 Yuhangtang Rd., Hangzhou, Zhejiang 310058, China.
Org Biomol Chem. 2019 Oct 14;17(38):8749-8755. doi: 10.1039/c9ob01749f. Epub 2019 Sep 24.
A direct coupling of 2H-indazoles' C3 position and acyl groups has been achieved to produce 3-acyl-2H-indazoles. The Ni(ii)-catalyzed acylation might proceed through a radical pathway for the reaction of 2H-indazoles with either aryl or alkyl aldehydes in the presence of the free radical initiator TBHP and additive PivOH. This method provided a superior approach to fulfil the direct C3-acylation of 2H-indazoles with yields up to 91%. And various substituted 2H-indazoles were well tolerated with this method, enriching the diversity of 2H-indazole derivatives. In comparison with previously reported approaches for the C3-acylation of 2H-indazoles, the developed reaction represents a more convenient and economical method directly using aldehydes as the acylation agents.
2H-吲唑的 C3 位与酰基的直接偶联已被用于生成 3-酰基-2H-吲唑。Ni(ii)催化的酰化反应可能是通过自由基途径进行的,即在自由基引发剂 TBHP 和添加剂 PivOH 的存在下,2H-吲唑与芳基或烷基醛反应。该方法为实现 2H-吲唑的直接 C3 酰化提供了一种优越的方法,产率高达 91%。并且各种取代的 2H-吲唑都可以耐受这种方法,丰富了 2H-吲唑衍生物的多样性。与之前报道的 2H-吲唑 C3 酰化方法相比,该反应代表了一种更方便、更经济的方法,直接使用醛作为酰化试剂。