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水性电解质溶液中胶体聚苯乙烯颗粒悬浮液介电特性的宽频范围研究

Broad Frequency Range Study of the Dielectric Properties of Suspensions of Colloidal Polystyrene Particles in Aqueous Electrolyte Solutions.

作者信息

Grosse C, Tirado M, Pieper W, Pottel R

机构信息

Instituto de Fisica, Universidad Nacional de Tucuman, Av. Independencia 1800, San Miguel de Tucuman, 4000, Argentina

出版信息

J Colloid Interface Sci. 1998 Sep 1;205(1):26-41. doi: 10.1006/jcis.1998.5587.

Abstract

The dielectric properties of suspensions of spherical polystyrene particles with radii of 34 and 50 nm, in aqueous electrolyte solutions were measured in the frequency range of 10 kHz to 30 GHz using HP 4192A impedance and 8753A network analyzers, and double path interferometers. The samples were prepared from the stock suspensions with a high particle concentration (volume fraction of 0.4), which were used either unchanged or diluted with increasing amounts of water down to a concentration of 0.05. The permittivity and total loss spectra showed three well-defined relaxation regions, which could successfully be interpreted using an existing model [Grosse, C., J. Phys. Chem. 92, 3905 (1988)] (corrected by including a term of counterion diffusion on the particle surface). A model spectral function was fitted to the data using seven free parameters: the static conductivity of the electrolyte solution, three parameters associated with the relaxation of the electrolyte solution, and just three parameters for the description of both the counterion and the Maxwell-Wagner relaxations. For different particle concentrations, the values of the surface conductivity (obtained from the Maxwell-Wagner parameters) remained essentially constant, while the low-frequency relaxation parameters exhibited very good agreement with theoretical predictions in Delgado, A. V., Arroyo, F. J., Gonzales-Caballero, F., Shilov, V. N., and Borkovskaya, Yu. B., Colloids Surf. A, in press. Copyright 1998 Academic Press.

摘要

使用惠普4192A阻抗分析仪、8753A网络分析仪和双路径干涉仪,在10 kHz至30 GHz的频率范围内测量了半径为34纳米和50纳米的球形聚苯乙烯颗粒悬浮液在水性电解质溶液中的介电性能。样品由高颗粒浓度(体积分数为0.4)的储备悬浮液制备而成,这些储备悬浮液要么直接使用,要么用逐渐增加的水量稀释至浓度为0.05。介电常数和总损耗谱显示出三个明确的弛豫区域,使用现有模型[格罗斯,C.,《物理化学杂志》92,3905(1988)](通过纳入颗粒表面反离子扩散项进行修正)能够成功地对其进行解释。使用七个自由参数将模型光谱函数拟合到数据上:电解质溶液的静态电导率、与电解质溶液弛豫相关的三个参数,以及用于描述反离子和麦克斯韦-瓦格纳弛豫的仅三个参数。对于不同的颗粒浓度,表面电导率值(从麦克斯韦-瓦格纳参数获得)基本保持恒定,而低频弛豫参数与德尔加多,A. V.、阿罗约,F. J.、冈萨雷斯-卡瓦列罗,F.、希洛夫,V. N.和博尔科夫斯卡娅,Yu. B.在《胶体与界面科学A》(即将出版)中的理论预测表现出非常好的一致性。版权所有1998年学术出版社。

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