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一种用于绿色快速合成生物活性多取代吡咯和1,2,4,5-四取代咪唑衍生物的高效且可循环利用的纳米催化剂。

An efficient and recyclable nanocatalyst for the green and rapid synthesis of biologically active polysubstituted pyrroles and 1,2,4,5-tetrasubstituted imidazole derivatives.

作者信息

Thwin Myo, Mahmoudi Boshra, Ivaschuk Olga A, Yousif Qahtan A

机构信息

Yangon Technological University Myanmar.

Research Center, Sulaimani Polytechnic University Sulaimani 46001 Kurdistan Region Iraq.

出版信息

RSC Adv. 2019 May 21;9(28):15966-15975. doi: 10.1039/c9ra02325a. eCollection 2019 May 20.

Abstract

An effective process for the green and rapid synthesis of biologically active polysubstituted pyrroles and 1,2,4,5-tetrasubstituted imidazoles derivatives using Cu@imine/FeO MNPs catalyst under solvent-free conditions is explained. This catalyst showed high reactivity for the synthesis of a set of different derivatives of polysubstituted pyrroles and 1,2,4,5-tetrasubstituted imidazole derivatives under appropriate reaction conditions and short times. Moreover, the catalyst was also recycled and reused for six runs with no considerable reduction in reactivity and yields. Compared to the reported procedures, this method consistently demonstrates the advantages of low catalyst loading, short reaction times, easy separation and purification of the products, high yields, and high recoverability and recoverability of the catalyst.

摘要

阐述了一种在无溶剂条件下使用Cu@imine/FeO磁性纳米颗粒催化剂绿色快速合成生物活性多取代吡咯和1,2,4,5-四取代咪唑衍生物的有效方法。该催化剂在适当的反应条件和短时间内,对一系列不同的多取代吡咯衍生物和1,2,4,5-四取代咪唑衍生物的合成表现出高反应活性。此外,该催化剂还可循环使用六次,反应活性和产率没有明显降低。与已报道的方法相比,该方法始终显示出催化剂负载量低、反应时间短、产物易于分离和纯化、产率高以及催化剂的高回收率和可回收性等优点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcd1/9064275/bb5d92eedb6c/c9ra02325a-s1.jpg

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