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Excess chemical potentials, partial molar enthalpies and entropies in binary aqueous acetone and tetramethyl urea at 25 degrees C

机译:25°C下二元丙酮水溶液和四甲基脲中的过量化学势,部分摩尔焓和熵

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摘要

We measured excess chemical potentials, mu (E)(i), excess partial molar enthalpy, H-i(E), of solute i in aqueous acetone and tetramethyl urea (TMU). We then evaluated excess partial molar entropy, S-i(E). They all were determined accurately and in small increments in mole fraction, and hence, it was possible to take one more derivative with respect to mole fraction. These higher derivatives were used to learn more about intermolecular interaction in solution. Furthermore, they were used to detect anomalous thermodynamic behaviour, in particular a qualitative change in mixing scheme. We conclude that in both aqueous solutions, three distinctively different mixing schemes are operative depending on the composition range, and that in the most H2O-rich region, solute molecules enhance the hydrogen bond network of H2O in their immediate vicinity. However, the hydrogen bond probability in the bulk of H2O away from solute is reduced. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 12]
机译:我们测量了丙酮和四甲基脲(TMU)中溶质i的过量化学势mu(E)(i),过量部分摩尔焓H-i(E)。然后,我们评估了过量的部分摩尔熵S-i(E)。它们都是精确确定的,并且摩尔分数的增量很小,因此,就摩尔分数而言,还可以采用一种导数。这些高阶导数用于了解溶液中的分子间相互作用。此外,它们还用于检测异常的热力学行为,尤其是混合方案的质变。我们得出结论,在两种水溶液中,根据组成范围,可以使用三种截然不同的混合方案,并且在最富H2O的区域中,溶质分子会增强其附近的H2O氢键网络。但是,大量H2O中远离溶质的氢键可能性降低了。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:12]

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