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硫代巴比妥酸衍生物的晶体结构、光谱研究及理论研究:理解氢键模式

Crystal structure, spectroscopic studies and theoretical studies of thiobarbituric acid derivatives: understanding the hydrogen-bonding patterns.

作者信息

Sharma Anamika, Zamisa Sizwe J, Noki Sikabwe, Almarhoon Zainab, El-Faham Ayman, Torre Beatriz G de la, Albericio Fernando

机构信息

School of Health Sciences, University of KwaZulu Natal, University Road, Westville, Durban, 4000, South Africa.

School of Chemistry and Physics, University of KwaZulu Natal, Private bag X54001, Westville campus, Durban, 4000, South Africa.

出版信息

Acta Crystallogr C Struct Chem. 2018 Dec 1;74(Pt 12):1703-1714. doi: 10.1107/S2053229618015516. Epub 2018 Nov 22.

Abstract

In addition to their wide-ranging applications in the pharmaceutical industry, thiobarbituric acid (TBA) derivatives are also known to possess applications in engineering and materials science. 20 TBA derivatives, with diversity at the N and C-5 positions through acylation, Schiff base formation, Knoevenagel condensation, thioamide and enamine formation, were studied. The absolute configurations for six derivatives, namely 5-acetyl-1,3-diethyl-2-thioxodihydropyrimidine-4,6(1H,5H)-dione, CHNOS, A01, 1,3-diethyl-5-propionyl-2-thioxodihydropyrimidine-4,6(1H,5H)-dione, CHNOS, A02, tert-butyl [1-(1,3-diethyl-4,6-dioxo-2-thioxohexahydropyrimidin-5-yl)-3-methyl-1-oxobutan-2-yl]carbamate, CHNOS, A06, 1,3-diethyl-4,6-dioxo-2-thioxo-N-(p-tolyl)hexahydropyrimidine-5-carbothioamide, CHNOS, A13, 5-(1-aminoethylidene)-1,3-diethyl-2-thioxodihydropyrimidine-4,6(1H,5H)-dione, CHNOS, A17, and 5-(1-aminopropylidene)-1,3-diethyl-2-thioxodihydropyrimidine-4,6(1H,5H)-dione, CHNOS, A18, were confirmed by single-crystal X-ray crystallography, which indicates the formation of intramolecular hydrogen bonding in all six cases and intermolecular hydrogen bonding for A17. In A13, the presence of two intramolecular hydrogen bonds was observed. The stabilization of the enol form over the keto form was confirmed by computation. In order to convert the keto form to the enol form, an energy barrier of 55.05 kcal mol needs to be overcome, as confirmed by transition-state calculations.

摘要

硫代巴比妥酸(TBA)衍生物除了在制药行业有广泛应用外,在工程和材料科学领域也有应用。研究了20种通过酰化、席夫碱形成、克诺文纳格尔缩合、硫代酰胺和烯胺形成在N和C-5位具有多样性的TBA衍生物。六种衍生物的绝对构型,即5-乙酰基-1,3-二乙基-2-硫代二氢嘧啶-4,6(1H,5H)-二酮(CHNOS,A01)、1,3-二乙基-5-丙酰基-2-硫代二氢嘧啶-4,6(1H,5H)-二酮(CHNOS,A02)、叔丁基[1-(1,3-二乙基-4,6-二氧代-2-硫代六氢嘧啶-5-基)-3-甲基-1-氧代丁烷-2-基]氨基甲酸酯(CHNOS,A06)、1,3-二乙基-4,6-二氧代-2-硫代-N-(对甲苯基)六氢嘧啶-5-碳硫代酰胺(CHNOS,A13)、5-(1-氨基亚乙基)-1,3-二乙基-2-硫代二氢嘧啶-4,6(1H,5H)-二酮(CHNOS,A17)和5-(1-氨基亚丙基)-1,3-二乙基-2-硫代二氢嘧啶-4,6(1H,5H)-二酮(CHNOS,A18),通过单晶X射线晶体学得到确认,这表明在所有六种情况下都形成了分子内氢键,而A17还形成了分子间氢键。在A13中,观察到存在两个分子内氢键。通过计算证实了烯醇式比酮式更稳定。通过过渡态计算证实,为了将酮式转化为烯醇式,需要克服55.05 kcal mol的能垒。

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