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Experimental study on dielectric relaxation of SiO2 nano-particle suspensions for developing a particle characterization method based on electrical impedance spectroscopy

机译:基于电阻抗谱的siO2纳米粒子悬浮液介电弛豫开发粒子表征方法的实验研究

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摘要

In this paper, the dielectric relaxation of SiO2 nano-particle suspensions is studied by electrical impedance spectroscopy method. The case of suspension composed of particles with thick double layer is concerned. The objective of this study is to find out the relationship between particle properties (size and concentration) and electrical impedance spectroscopy for developing a particle characterization method based on electrical impedance spectroscopy/tomography. The influences of particle size on electrical impedance spectroscopy (EIS) and relaxation frequency are investigated and analyzed. The experimental results indicate that impedance phase angle and α relaxation frequency are functions of particle size. α relaxation frequency is proportionally changing with (a+ κ-1)-n (a is particle radius, κ-1 is double layer thickness, n equals 0.344 for 4.76% suspension and 0.308 for 2.38% suspension). The exponent term, n, is smaller than the one in dilute suspensions (n=2), which is possibly due to decreasing of diffusion distance of ions around the particles in concentrated suspensions with thick double layer. The impedance parameters, including conductivity increment, δK', and α relaxation frequency are influenced by particle volume fraction. The conductivity increment, δK' becomes less negative with increasing particle volume fraction due to the positive contribution of double layer charge on the conductivity increment. The α relaxation frequency increases with increasing particle volume fraction and the small particles show a more significant increase than large particles. The experimental result on the differential electrical impedance tomographic images between the silica suspension and water (with same conductivity value) shows that small differences on the values of impedance imaginary part and phase can be observed at the upper right corner in the EIT images, which represent a small differentiation on the dielectric property caused by the electrical polarization of double layer on the particle surface.
机译:本文通过电阻抗光谱法研究了SiO2纳米颗粒悬浮液的介电弛豫。涉及由具有厚双层的颗粒组成的悬浮液的情况。这项研究的目的是找出颗粒性质(尺寸和浓度)与电阻抗光谱之间的关系,以开发基于电阻抗光谱/断层扫描的颗粒表征方法。研究和分析了粒径对电阻抗谱(EIS)和弛豫频率的影响。实验结果表明,阻抗相角和α弛豫频率是粒径的函数。 α弛豫频率随(a +κ-1)-n成比例变化(a是粒子半径,κ-1是双层厚度,对于4.76%的悬浮液,n等于0.344,对于2.38%的悬浮液,n等于0.308)。指数项n小于稀悬浮液中的n(2),这可能是由于离子在具有厚双层的浓缩悬浮液中围绕颗粒的扩散距离减小所致。包括电导率增量,δK'和α弛豫频率在内的阻抗参数受颗粒体积分数的影响。由于双层电荷对电导率增量的正贡献,电导率增量δK'随颗粒体积分数的增加而减小。 α弛豫频率随颗粒体积分数的增加而增加,并且小颗粒比大颗粒显示出更大的增加。在二氧化硅悬浮液和水(具有相同电导率值)之间的差分电阻层析层析图像上的实验结果表明,在EIT图像的右上角可以观察到阻抗虚部和相位的值的细微差异,由粒子表面上的双层电极化引起的介电性能的微小差异。

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  • 作者

    Zhao Y; Wang M;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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