Roldán-Toro R, Solier J D
Department of Physics, University of Extremadura, Avda. de Elvas s/n, 06071 Badajoz, Spain.
J Colloid Interface Sci. 2004 Jun 1;274(1):76-88. doi: 10.1016/j.jcis.2004.02.068.
In this work we analyze the dielectric properties of dilute colloidal suspensions of nonconducting spherical particles with a thin electrical double layer from experimental data obtained by performing impedance spectroscopy experiments over a broad frequency range, from 20 Hz to 1 GHz. The electrode polarization correction was made by fitting a circuit model in the complex impedance plane (impedance spectrum) using a constant phase angle (CPA) element to fit the electrode polarization in series with the sample impedance. This simple procedure is found to be effective in eliminating the electrode contribution. The dielectric response shows two different dispersions, the alpha relaxation (counterion relaxation) that occurs at low kilohertz frequencies, and the delta relaxation (Maxwell-Wagner effect) found in the MHz range. These are reasonably well fitted over a broad frequency range by the theoretical expressions given by a simplified standard model (not including anomalous conduction) and a generalized model (including anomalous conduction) for the low-frequency dispersion, plus Maxwell-Wagner-O'Konski theory for the delta relaxation in the mid-frequency range. An analysis was also made of the need to include, for these latices, the effects of ion mobility in the Stern layer in order for the values of the zeta-potential obtained from electrophoretic and dielectric data to be compatible with each other.
在这项工作中,我们根据在20 Hz至1 GHz的宽频率范围内进行阻抗谱实验所获得的实验数据,分析了具有薄双电层的非导电球形颗粒稀胶体悬浮液的介电特性。通过在复阻抗平面(阻抗谱)中拟合电路模型,使用恒定相位角(CPA)元件来拟合与样品阻抗串联的电极极化,从而进行电极极化校正。发现这个简单的程序在消除电极贡献方面是有效的。介电响应显示出两种不同的色散,一种是在低频千赫兹频率下出现的α弛豫(反离子弛豫),另一种是在兆赫兹范围内发现的δ弛豫(麦克斯韦-瓦格纳效应)。通过简化标准模型(不包括反常传导)和广义模型(包括反常传导)给出的低频色散理论表达式,以及中频范围内δ弛豫的麦克斯韦-瓦格纳-奥康斯基理论,这些色散在很宽的频率范围内得到了合理的拟合。还分析了对于这些胶乳,为了使从电泳和介电数据获得的ζ电位值相互兼容,需要考虑斯特恩层中离子迁移率的影响。