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硫脲、脲和胍的机械化学合成

Mechanochemical synthesis of thioureas, ureas and guanidines.

作者信息

Štrukil Vjekoslav

机构信息

Division of Organic Chemistry and Biochemistry, Ruđer Bošković Institute, Bijenička cesta 54, 10000 Zagreb, Croatia.

出版信息

Beilstein J Org Chem. 2017 Sep 1;13:1828-1849. doi: 10.3762/bjoc.13.178. eCollection 2017.

Abstract

In this review, the recent progress in the synthesis of ureas, thioureas and guanidines by solid-state mechanochemical ball milling is highlighted. While the literature is abundant on their preparation in conventional solution environment, it was not until the advent of solvent-free manual grinding using a mortar and pestle and automated ball milling that new synthetic opportunities have opened. The mechanochemical approach not only has enabled the quantitative synthesis of (thio)ureas and guanidines without using bulk solvents and the generation of byproducts, but it has also been established as a means to develop "click-type" chemistry for these classes of compounds and the concept of small molecule desymmetrization. Moreover, mechanochemistry has been demonstrated as an effective tool in reaction discovery, with emphasis on the reactivity differences in solution and in the solid state. These three classes of organic compounds share some structural features which are reflected in their physical and chemical properties, important for application as organocatalysts and sensors. On the other hand, the specific and unique nature of each of these functionalities render (thio)ureas and guanidines as the key constituents of pharmaceuticals and other biologically active compounds.

摘要

在本综述中,重点介绍了通过固态机械化学球磨合成脲、硫脲和胍的最新进展。虽然关于它们在传统溶液环境中的制备文献丰富,但直到使用研钵和杵进行无溶剂手动研磨以及自动化球磨出现,才开启了新的合成机会。机械化学方法不仅能够在不使用大量溶剂且不产生副产物的情况下定量合成(硫)脲和胍,还已成为为这类化合物开发“点击型”化学以及小分子去对称化概念的一种手段。此外,机械化学已被证明是反应发现中的一种有效工具,重点在于溶液和固态中的反应性差异。这三类有机化合物具有一些结构特征,这些特征反映在它们的物理和化学性质中,对于作为有机催化剂和传感器的应用很重要。另一方面,这些官能团各自的特定和独特性质使(硫)脲和胍成为药物及其他生物活性化合物的关键成分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97f3/5588497/b1f689fc16b8/Beilstein_J_Org_Chem-13-1828-g006.jpg

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