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烟酰胺在纯溶液和二元溶液中的热力学和分子间相互作用:实验测量和 COSMO-RS 浓度相关反应研究。

Thermodynamics and Intermolecular Interactions of Nicotinamide in Neat and Binary Solutions: Experimental Measurements and COSMO-RS Concentration Dependent Reactions Investigations.

机构信息

Department of Physical Chemistry, Pharmacy Faculty, Collegium Medicum of Bydgoszcz, Nicolaus Copernicus University in Toruń, Kurpińskiego 5, 85-950 Bydgoszcz, Poland.

出版信息

Int J Mol Sci. 2021 Jul 8;22(14):7365. doi: 10.3390/ijms22147365.

Abstract

In this study, the temperature-dependent solubility of nicotinamide (niacin) was measured in six neat solvents and five aqueous-organic binary mixtures (methanol, 1,4-dioxane, acetonitrile, DMSO and DMF). It was discovered that the selected set of organic solvents offer all sorts of solvent effects, including co-solvent, synergistic, and anti-solvent features, enabling flexible tuning of niacin solubility. In addition, differential scanning calorimetry was used to characterize the fusion thermodynamics of nicotinamide. In particular, the heat capacity change upon melting was measured. The experimental data were interpreted by means of COSMO-RS-DARE (conductor-like screening model for realistic solvation-dimerization, aggregation, and reaction extension) for concentration dependent reactions. The solute-solute and solute-solvent intermolecular interactions were found to be significant in all of the studied systems, which was proven by the computed mutual affinity of the components at the saturated conditions. The values of the Gibbs free energies of pair formation were derived at an advanced level of theory (MP2), including corrections for electron correlation and zero point vibrational energy (ZPE). In all of the studied systems the self-association of nicotinamide was found to be a predominant intermolecular complex, irrespective of the temperature and composition of the binary system. The application of the COSMO-RS-DARE approach led to a perfect match between the computed and measured solubility data, by optimizing the parameter of intermolecular interactions.

摘要

在这项研究中,测量了烟酰胺(烟酸)在六种纯溶剂和五种水-有机二元混合物(甲醇、1,4-二氧六环、乙腈、二甲基亚砜和 N,N-二甲基甲酰胺)中的温度依赖性溶解度。发现所选的有机溶剂系列提供了各种溶剂效应,包括共溶剂、协同和反溶剂特性,能够灵活调节烟酰胺的溶解度。此外,差示扫描量热法用于表征烟酰胺的熔融热力学。特别是,测量了熔融时的热容变化。通过 COSMO-RS-DARE(用于实际溶剂化-二聚化、聚集和反应扩展的导体样屏蔽模型)对浓度相关反应解释了实验数据。在所有研究的系统中都发现溶质-溶质和溶质-溶剂的分子间相互作用很重要,这可以通过在饱和条件下计算出的组分的相互亲和力来证明。在包括电子相关和零点振动能(ZPE)校正的高级理论(MP2)水平上推导了对形成对的吉布斯自由能。在所有研究的系统中,烟酰胺的自缔合被发现是主要的分子间复合物,而不论二元系统的温度和组成如何。通过优化分子间相互作用的参数,COSMO-RS-DARE 方法的应用导致计算和测量的溶解度数据之间的完美匹配。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0e2/8306691/01fc6db08eb1/ijms-22-07365-g001.jpg

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