甘醇及其化学性质

O. V. Ponomarenko, S. Panshina, A. Bakibaev, Rahmetulla Sh. Erkasov, Madina S. Kenzhebaj, Anel' S. Montaeva
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摘要

在杂环化合物的化学中,双环双脲类-糖脲类具有特殊的地位。乙二醇被用作工业生产物质的基础,这些物质已在人类生活的许多领域得到应用。二羟基脲衍生物的多样性及其性质主要是由于其双环结构中有不同的取代基。在这篇综述中,2,4,6,8-四氮杂环[3.3.0。以辛烷-3,7-二酮(乙二醇脲)作为双环双脲类化合物的主要代表,对其理化性质及其衍生物的合成方法进行了研究。特别介绍并讨论了乙二醇脲的主要理化性质及其红外光谱、核磁共振光谱和x射线衍射分析所得的数据。本文简要概述了已知的糖醛酸酯及其衍生物的合成方法,重点介绍了糖醛酸酯及其衍生物的化学性质及其改性方法。简要介绍了以n -烷基糖基脲为配体的配位化合物。介绍并讨论了糖醛酸n -卤化和n -酰化的反应产物。二羟基苯甲酸的磷、硝基和亚硝基衍生物的反应;烷基化方法、曼尼希反应、硫离子化、碱水解和醇基羰基还原反应也有介绍。本文讨论了以甲醛为前体合成瓜[n]脲的缩合反应中大分子的形成。
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Glycoluril and Its Chemical Properties
In the chemistry of heterocyclic compounds, bicyclic bisureas — glycolurils, have a special place. Glycolurils are used as a basis for the industrial production of substances that have found application in many areas of human life. The variety of glycoluril derivatives and their properties is primarily due to various substituents in the bicyclic structure. In this review, 2,4,6,8-tetraazabicyclo[3.3.0.]octane-3,7-dione (glycoluril), as the main representative of bicyclic bisureas, its physico-chemical properties, and methods for the synthesis of deriva-tives based on it are considered. In particular, the main physico-chemical characteristics of glycoluril and the data obtained from its spectral analysis by IR, NMR spectroscopy and X-ray diffraction analysis are present-ed and discussed. The paper briefly outlines the known methods for the synthesis of glycolurils and related compounds, also highlights the chemical properties of glycoluril and its derivatives, as well as ways to modi-fy them. Coordination compounds based on N-alkylglycolurils as ligands are briefly considered. The reaction products of N-halogenation and N-acylation of glycolurils are presented and discussed. Reactions for obtain-ing phosphorus-, nitro- and nitroso derivatives of glycolurils; alkylation methods, Mannich reactions, thionization, alkaline hydrolysis and reduction reactions at the carbonyl group of glycolurils are also shown. There is a discussion of the macromolecules formation in the condensation reaction of glycoluril with formal-dehyde as precursors for the synthesis of cucurbit[n]urils.
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