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首页> 外文期刊>Physical chemistry chemical physics: PCCP >The permittivity of thermodynamically ideal liquid mixtures and the excess relative permittivity of binary dielectrics
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The permittivity of thermodynamically ideal liquid mixtures and the excess relative permittivity of binary dielectrics

机译:热力学理想的液体混合物的介电常数及二元电介质的过度相对介电常数

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摘要

The ideal relative permittivity of liquid mixtures is demonstrated to be a volume-fraction-weighted average of the pure-component relative permittivities. This generalised-thermodynamics result is used to define the molar electric dipole, permittivity, dielectric polarization and electric susceptibility of thermodynamically ideal liquid mixtures and the corresponding excess properties. A hyperbolic approach is developed to the analysis of averaging formulae that are frequently used to predict the effective permittivity of composite materials. Some of these formulae are shown to be segments of rectangular hyperbolae with fixed asymptote values, whereas others can be understood in terms of rectangular hyperbolae with composition-dependent asymptote values. Relative permittivities of binary mixtures between tetraglyme and hexane, cyclohexane or benzene covering the complete composition range are reported at various temperatures. These data are used to outline a novel method for analysing the excess relative permittivity of liquid mixtures.
机译:液体混合物的理想相对介电常数被证明是纯组分相对介质的体积分数加权平均值。该广义热力学结果用于定义热力学理想的液体混合物的摩尔电偶极,介电常数,介电偏振和电敏感性和相应的过量性质。开发了一种双曲线方法,用于分析通常用于预测复合材料的有效介电常数的平均公式。这些配方中的一些被证明是具有固定渐近值的矩形双曲线的区段,而其他配方可以在具有组成依赖性渐近值的长方形双曲面方面理解。在各种温度下报道了四平均和己烷之间的二元混合物,环己烷或苯之间的二元混合物的相对介质。这些数据用于概述一种用于分析液体混合物的过量相对介电常数的新方法。

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    Departamento de Quimica e Bioquimica Centro de Ciencias Moleculares e Materials Faculdade de Ciencias Universidade de Lisboa Campo Grande P-1749-016 Lisboa Portugal.;

    Departamento de Fisica Aplicada Facultad de Ciencias Universidad de Vigo 36210 Vigo Spain.;

    Thermodynamique des Solutions et des Polimeres Universite Blaise Pascal 63177 Aubiere Cedex France.;

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  • 正文语种 eng
  • 中图分类 化学工业;
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