iBET, Instituto de Biologia Experimental e Tecnológica, Apartado 12, 2781-901 Oeiras, Portugal.
TQB-NOVA, Instituto de Tecnologia Química e Biológica António Xavier, Universidade Nova de Lisboa, Avenida da República, 2780-157 Oeiras, Portugal.
Molecules. 2021 Mar 23;26(6):1801. doi: 10.3390/molecules26061801.
The characterization of terpene-based eutectic solvent systems is performed to describe their solid-liquid phase transitions. Physical properties are measured experimentally and compared to computed correlations for deep eutectic solvents (DES) and the percentage relative error for the density, surface tension, and refractive index is obtained. The thermodynamic parameters, including the degradation, glass transition and crystallization temperatures, are measured using DSC and TGA. Based on these data, the solid-liquid equilibrium phase diagrams are calculated for the ideal case and predictions are made using the semi-predictive UNIFAC and the predictive COSMO RS models, the latter with two different parametrization levels. For each system, the ideal, experimental, and predicted eutectic points are obtained. The deviation from ideality is observed experimentally and using the thermodynamic models for Thymol:Borneol and Thymol:Camphor. In contrast, a negative deviation is observed only experimentally for Menthol:Borneol and Menthol:Camphor. Moreover, the chemical interactions are analyzed using FTIR and H-NMR to study the intermolecular hydrogen bonding in the systems.
对萜烯基共晶溶剂体系进行了特性描述,以描述其固液相变。通过实验测量了物理性质,并与深共晶溶剂 (DES) 的计算相关性进行了比较,得到了密度、表面张力和折射率的相对误差百分比。使用 DSC 和 TGA 测量了包括降解、玻璃化转变和结晶温度在内的热力学参数。基于这些数据,计算了理想情况下的固液平衡相图,并使用半预测性 UNIFAC 和预测性 COSMO RS 模型进行了预测,后者使用了两种不同的参数化水平。对于每个体系,得到了理想的、实验的和预测的共晶点。从理想状态的偏差是通过实验和使用热力学模型来观察到的,这些模型适用于百里香酚:龙脑和百里香酚:樟脑。相比之下,仅在实验中观察到薄荷醇:龙脑和薄荷醇:樟脑的负偏差。此外,还使用 FTIR 和 H-NMR 分析了化学相互作用,以研究体系中的分子间氢键。