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乙二醛在无金属二羰基化反应中的双重作用:对称和不对称二羰基咪唑杂环的合成

Dual Role of Glyoxal in Metal-Free Dicarbonylation Reaction: Synthesis of Symmetrical and Unsymmetrical Dicarbonyl Imidazoheterocycles.

作者信息

Nandwana Nitesh Kumar, Patel Om P S, Srivathsa Manu R, Kumar Anil

机构信息

Department of Chemistry, Birla Institute of Technology and Science Pilani, Pilani Campus, Pilani, Rajasthan 333031, India.

出版信息

ACS Omega. 2019 Jun 11;4(6):10140-10150. doi: 10.1021/acsomega.9b00716. eCollection 2019 Jun 30.

Abstract

A practical and efficient method has been developed for the dicarbonylation of imidazoheterocycles using glyoxals as dicarbonyl precursors under metal-free conditions in acetic acid. A series of symmetrical and unsymmetrical dicarbonyl imidazoheterocycles was synthesized in good yields. Aryl and alkyl glyoxals also demonstrated excellent reactivity under similar reaction conditions and delivered corresponding dicarbonyl imidazoheterocycles in high yields. It is believed that the glyoxal plays a dual role both as a dicarbonyl source and as an oxidant in this transformation. A probable mechanistic pathway has been proposed based on control experiments and electrospray ionization high-resolution mass spectrometry analysis.

摘要

已开发出一种实用且高效的方法,用于在无金属条件下,以乙二醛为二羰基前体,在乙酸中对咪唑杂环进行二羰基化反应。合成了一系列对称和不对称的二羰基咪唑杂环化合物,产率良好。芳基乙二醛和烷基乙二醛在类似反应条件下也表现出优异的反应活性,并以高产率得到相应的二羰基咪唑杂环化合物。据信,在该转化过程中,乙二醛既作为二羰基源又作为氧化剂发挥双重作用。基于对照实验和电喷雾电离高分辨率质谱分析,提出了一种可能的机理途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6473/6648449/8a6e8f93e3af/ao-2019-007167_0001.jpg

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