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苦杏仁苷在乙醇 + 水混合溶剂中的溶解度、溶液热力学及优先溶剂化作用

Solubility, Solution Thermodynamics, and Preferential Solvation of Amygdalin in Ethanol + Water Solvent Mixtures.

作者信息

Aydi Abdelkarim, Ayadi Cherifa, Ghachem Kaouther, Al-Khazaal Abdulaal Z, Delgado Daniel R, Alnaief Mohammad, Kolsi Lioua

机构信息

LETIAM, Lip (Sys)2, IUT d'Orsay, Université Paris-Sud, Plateau de Moulon, 91400 Orsay, France.

Laboratory of Materials Molecules and Applications, Preparatory Institute for Scientific and Technical Studies, University of Carthage, Tunis 1082, Tunisia.

出版信息

Pharmaceuticals (Basel). 2020 Nov 16;13(11):395. doi: 10.3390/ph13110395.

Abstract

The equilibrium solubility of amygdalin in [ethanol (1) + water (2)] mixtures at 293.15 K to 328.15 K was reported. The thermodynamic properties (standard enthalpy ΔH°, standard entropy ΔS°, and standard Gibbs energy of solution ΔG°) were computed using the generated solubility data via van't Hoff and Gibbs equations. The dissolution process of amygdalin is endothermic and the driving mechanism in all mixtures is entropy. Maximal solubility was achieved in 0.4 mole fraction of ethanol at 328.15 K and the minimal one in neat ethanol at 293.15 K. Van't Hoff, Jouyban-Acree-van't Hoff, and Buchowski-Ksiazczak models were used to simulate the obtained solubility data. The calculated solubilities deviate reasonably from experimental data. Preferential solvation parameters of amygdalin in mixture solvents were analyzed using the inverse Kirkwood-Buff integrals (IKBI) method. Amygdalin is preferentially solvated by water in ethanol-rich mixtures, whereas in water-rich mixtures, there is no clear evidence that determines which of water or ethanol solvents would be most likely to solvate the molecule.

摘要

报道了苦杏仁苷在[乙醇(1)+水(2)]混合溶剂中293.15 K至328.15 K的平衡溶解度。通过范特霍夫方程和吉布斯方程,利用所测得的溶解度数据计算了热力学性质(标准焓变ΔH°、标准熵变ΔS°和标准溶解吉布斯自由能变ΔG°)。苦杏仁苷的溶解过程是吸热的,所有混合溶剂中的驱动机制均为熵驱动。在328.15 K时,乙醇摩尔分数为0.4时苦杏仁苷的溶解度最大;在293.15 K时,纯乙醇中苦杏仁苷的溶解度最小。采用范特霍夫模型、Jouyban-Acree-van't Hoff模型和Buchowski-Ksiazczak模型对所获得的溶解度数据进行模拟。计算得到的溶解度与实验数据存在合理偏差。采用反柯克伍德-布夫积分(IKBI)法分析了苦杏仁苷在混合溶剂中的优先溶剂化参数。在富乙醇混合溶剂中,苦杏仁苷优先被水溶剂化;而在富水混合溶剂中,没有明确证据表明水或乙醇哪种溶剂最有可能使该分子溶剂化。

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