Thermodynamic Model for the Mobility of Oxygen Anions in Dense Neon Gas

A. Borghesani, F. Aitken
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Abstract

Recently a thermodynamic model has been developed to describe and predict the ion mobility in He. It aims at computing the free volume available for the ionic drift motion through the medium. The radius of the free volume per particle is the hydrodynamic effective radius in the Stokes formula whose validity is extended to the region of large Knudsen number by using the Millikan-Cunningham slip factor correction. We used this model to describe new data of $\mathrm{O}_{2}^{-}$ ion mobility in supercritical Ne on several isotherms in a broad density range. The model parameters are adjusted once and for all by fitting the data on the isotherm closest to the critical one and allows the description of the density dependence of the mobility up to temperatures well above room temperature.
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致密氖气中氧阴离子迁移的热力学模型
最近建立了一个热力学模型来描述和预测He中的离子迁移率。它旨在计算离子在介质中漂移运动的自由体积。在Stokes公式中,每个粒子的自由体积半径是流体动力有效半径,通过Millikan-Cunningham滑移系数校正,将Stokes公式的有效性扩展到较大的Knudsen数区域。我们用这个模型描述了在宽密度范围内超临界Ne中几个等温线上$\ mathm {O}_{2}^{-}$离子迁移率的新数据。模型参数通过拟合最接近临界的等温线上的数据来一劳永逸地调整,并允许描述迁移率在远高于室温的温度下的密度依赖关系。
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