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首页> 外文期刊>Tropical Journal of Pharmaceutical Research >New insight into single phase formation of capric acid/menthol eutectic mixtures by Fourier-transform infrared spectroscopy and differential scanning calorimetry
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New insight into single phase formation of capric acid/menthol eutectic mixtures by Fourier-transform infrared spectroscopy and differential scanning calorimetry

机译:通过傅里叶变换红外光谱和差示扫描量热法对癸酸/薄荷醇共晶混合物进行新的洞察。

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Purpose: To examine the structural changes of a eutectic mixture comprising capric acid and menthol which are commonly used in pharmaceutical applications. Methods: A phase diagram was constructed by quantitative mixing of capric acid and menthol under controlled conditions until a single liquid phase was formed. Eutectic mixtures of capric acid: menthol at the ratios of 3:2, 1:4, 1:1, 2:3, and 1:4 were prepared. Hydrogen bond formation and conformational changes were analyzed using Fourier-transform infrared spectroscopy (FTIR) and differential scanning calorimetry (DSC). Microscopic imaging was carried out to capture phase change events upon increasing temperature. Results: Menthol confirmed the intact structure of a hexagonal ring. The high degree of broadening of the menthol O-H groups indicates hydrogen bond formation. FTIR band changes related to capric acid suggest a break-up of the methylene arrangement structure due to changes in the C-H band frequencies. The red shift encountered in C=O stretching band emphasizes hydrogen bond formation taking place between the oxygen atom of the hydroxyl group comprising the carboxylic moiety of capric acid and the hydrogen atom of menthol hydroxyl group. DSC results indicate the presence of two polymorphs of the capric acid/ menthol complex. Both exhibited crystallization and conformational change exotherms in addition to two melting endotherms as result of transformation of crystalline components to become partially crystalline due to hydrogen bond formation. Conclusion: The interaction between capric acid and menthol results in a typical preparation of deep eutectic systems that can act as natural-based solvents in numerous pharmaceutical applications.
机译:目的:检查包含癸酸和薄荷醇的共晶混合物的结构变化,常用于药物应用。方法:通过在受控条件下定量混合癸酸和薄荷醇来构建相图,直至形成单液相。癸酸的共晶混合物:制备薄荷醇,比例为3:2,1:4,1:1,2:3和1:4。使用傅里叶变换红外光谱(FTIR)和差示扫描量热法(DSC)分析氢键形成和构象变化。进行微观成像以在增加温度时捕获相变事件。结果:薄荷醇确认了六角环的完整结构。薄荷醇O-H基团的高度扩大表示氢键形成。与C-H带频率的变化导致的丙酸相关的FTIR带的变化表明亚甲基布置结构的分解。在C = o拉伸带中遇到的红色移位强调在包含癸酸的羧基的氧原子和薄荷羟肟氢原子的羟基的氧原子之间进行氢键形成。 DSC结果表明了癸酸/薄荷醇复合物的两种多晶型物。除了由于氢键形成引起的晶体成分的转化结果,除了两种熔化的熔化外,还表现出结晶和构象变化。结论:癸酸和薄荷醇之间的相互作用导致深凝纹系统的典型制备,可作为许多药物应用中的天然溶剂作用。

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