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分子和离子液体输运性质的密度标度。

Density scaling of the transport properties of molecular and ionic liquids.

机构信息

Laboratorio de Propiedades Termofísicas, Departamento de Física Aplicada, Universidade de Santiago de Compostela, E-15782 Santiago de Compostela, Spain.

出版信息

J Chem Phys. 2011 Apr 14;134(14):144507. doi: 10.1063/1.3575184.

Abstract

Casalini and Roland [Phys. Rev. E 69, 062501 (2004); J. Non-Cryst. Solids 353, 3936 (2007)] and other authors have found that both the dielectric relaxation times and the viscosity, η, of liquids can be expressed solely as functions of the group (TV (γ)), where T is the temperature, V is the molar volume, and γ a state-independent scaling exponent. Here we report scaling exponents γ, for the viscosities of 46 compounds, including 11 ionic liquids. A generalization of this thermodynamic scaling to other transport properties, namely, the self-diffusion coefficients for ionic and molecular liquids and the electrical conductivity for ionic liquids is examined. Scaling exponents, γ, for the electrical conductivities of six ionic liquids for which viscosity data are available, are found to be quite close to those obtained from viscosities. Using the scaling exponents obtained from viscosities it was possible to correlate molar conductivity over broad ranges of temperature and pressure. However, application of the same procedures to the self-diffusion coefficients, D, of six ionic and 13 molecular liquids leads to superpositioning of poorer quality, as the scaling yields different exponents from those obtained with viscosities and, in the case of the ionic liquids, slightly different values for the anion and the cation. This situation can be improved by using the ratio (D∕T), consistent with the Stokes-Einstein relation, yielding γ values closer to those of viscosity.

摘要

卡萨拉尼和罗兰[Phys. Rev. E 69, 062501 (2004); J. Non-Cryst. Solids 353, 3936 (2007)]和其他作者发现,液体的介电弛豫时间和粘度η都可以仅表示为(TV(γ))这一组的函数,其中 T 是温度,V 是摩尔体积,γ 是与状态无关的标度指数。在这里,我们报告了 46 种化合物的粘度的标度指数γ,包括 11 种离子液体。这种热力学标度对其他输运性质的推广,即离子和分子液体的自扩散系数以及离子液体的电导率进行了检验。对于六个具有粘度数据的离子液体的电导率的标度指数γ,发现它们非常接近从粘度获得的值。使用从粘度获得的标度指数,可以在较宽的温度和压力范围内关联摩尔电导率。然而,对于六个离子和 13 个分子液体的自扩散系数 D,应用相同的程序会导致较差的重叠,因为标度产生了与粘度不同的指数,并且在离子液体的情况下,阴离子和阳离子的值略有不同。通过使用与斯特克斯-爱因斯坦关系一致的比率(D/T),可以改善这种情况,从而使γ值更接近粘度的值。

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