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Characterization of Dominant Hydrogen Bonded Complex Structures of Dielectric Polarization and Viscous Flow Processes in Glycerol–Formamide Binary Mixtures

机译:甘油-甲酰胺二元混合物中介电极化和粘性流动过程的主要氢键键合复杂结构的表征

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The static permittivity and viscosity of glycerol–formamide (Gly–FA) binary mixtures were measured at eleven concentrations over the entire composition range and at temperatures T=288.15, 303.15, 318.15 and 333.15 K. The excess static permittivity and excess viscosity of the mixtures were determined using the mole-fraction additive mixture law. Results indicated that the molecular dielectric polarization in Gly–FA mixtures is governed by 1:1 complexes with a decrease in number of H-bonded parallel aligned dipolar ordering at all of the investigated temperatures. The 2Gly:FA complexes facilitate the viscous flow process and the number of these complexes decreases with increasing temperature. The apparent activation energy of viscous flow, determined from Arrhenius plots, increases with increases of the Gly concentration in the mixtures. The electric-field-induced increment of the Helmholtz free energy and the entropy of these binary mixtures were determined from the temperature dependence of the static permittivity and its derivative, respectively.
机译:在整个浓度范围内,温度为T = 288.15、303.15、318.15和333.15 K时,在11种浓度下测量了甘油-甲酰胺(Gly-FA)二元混合物的静电容率和粘度。混合物的静电容率和过量粘度使用摩尔分数添加剂混合定律确定。结果表明,在所有研究温度下,Gly-FA混合物中的分子介电极化受1:1配合物控制,H键平行排列的偶极有序数减少。 2Gly:FA复合物促进了粘性流动过程,并且这些复合物的数量随着温度的升高而减少。由Arrhenius曲线确定的粘性流动的表观活化能随混合物中Gly浓度的增加而增加。电场引起的亥姆霍兹自由能增量和这些二元混合物的熵分别由静电容率及其导数的温度依赖性确定。

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