A Highly Efficient Heterogeneous Copper-Catalyzed Oxidative Cyclization of Benzylamines and 1,3-Dicarbonyl Compounds To Give Trisubstituted Oxazoles
作者:Li Wei、Shengyong You、Yuxin Tuo、Mingzhong Cai
DOI:10.1055/s-0037-1610710
日期:2019.8
yields. This heterogeneous copper catalyst can be facilely prepared via a simple two-step procedure from readily available and inexpensive reagents and exhibits a slightly higher activity than Cu(OAc)2. MCM-41-2N-Cu(OAc)2 is also easy to recover and can be recycled up to eight times with almost consistent activity. The reaction is the first example of heterogeneous copper-catalyzed intermolecular cyclization
Metal-free, organocatalytic cascade formation of C–N and C–O bonds through dual sp<sup>3</sup>C–H activation: oxidative synthesis of oxazole derivatives
An organocatalytic cascade reaction that involves the formation of C-N, C-O and C=N bonds in one process via dual sp(3) C-H activation has been developed. This protocol affords a facile metal-free methodology for the synthesis of oxazole derivatives in air under mild conditions.
Facile Synthesis of Polysubstituted Oxazoles via A Copper-Catalyzed Tandem Oxidative Cyclization
作者:Changfeng Wan、Jintang Zhang、Sujing Wang、Jinmin Fan、Zhiyong Wang
DOI:10.1021/ol100688c
日期:2010.5.21
A highly efficient synthesis of polysubstituted oxazoles was developed via a copper-catalyzed tandem oxidative cyclization. The desired products can be obtained from readily available starting materials under mild conditions. This is an attractive alternative method for the synthesis of oxazole derivatives.
Convenient Route to Trisubstituted Oxazoles via a Copper-Catalysed Tandem Oxidative Cyclisation by Oxygen Oxidation
作者:Chengqun Chen、Wenfu Chen、Qianhong Bao
DOI:10.3184/174751915x14192609116136
日期:2015.1
cyclisation has been developed for the synthesis of trisubstitutedoxazoles, which is thought to proceed through cascade formation of C-N and C-O bonds by oxygen oxidation. The desired products can be obtained from readily available starting materials while avoiding hazardous materials. Therefore, a green synthetic method for the preparation of oxazoles has been found.
一种新型的铜催化氧化环化反应已被开发用于合成三取代恶唑,据认为该反应是通过氧氧化级联形成 CN 和 CO 键来进行的。所需的产品可以从容易获得的起始材料中获得,同时避免使用有害材料。因此,发现了一种制备恶唑的绿色合成方法。