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Introducing phase analysis light scattering for dielectric characterization: measurement of traveling-wave pumping.

机译:引入相位分析光散射以进行介电特性描述:行波泵浦的测量。

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摘要

Phase analysis light scattering (PALS) was applied to characterize a high-frequency traveling-wave (TW) micropump. Field strength and frequency characteristics were measured for aqueous solutions up to 40 MHz and conductivities of 16 mS/m. The TW field was generated by an ultramicroelectrode array of intercastellated electrodes, which were driven by square-topped signals. Pumping exhibited one major relaxation peak, which strongly increased for conductivities above 4 mS/m. The conductivity dependence of the peak frequency showed an unexpected nonlinear behavior. Around 20 MHz an additional peak caused by electronic resonance was found. Additional coils or capacitors shifted the resonance peak and allowed us to determine the electronic properties of the array. Analysis of distortions in the pump spectra caused by the harmonic content of the driving signals showed that the pump direction is determined by the traveling direction of the field. For measurement of AC-field-induced particle translations, the advantage of PALS over the commonly used microscopic analysis is that it offers an objective method for statistically significant, computerized registration of extremely slow motions. Thus, for dielectric characterization, low field strengths can be used, which is advantageous not only for analyzing liquid pumping, but also for measuring particle translations induced by dielectrophoresis or TW dielectrophoresis.
机译:应用相位分析光散射(PALS)表征高频行波(TW)微型泵。测量了最高40 MHz水溶液和电导率为16 mS / m的水溶液的场强和频率特性。 TW场是由相互交错的电极的超微电极阵列产生的,该电极由方形顶部信号驱动。抽运表现出一个主要的弛豫峰,当电导率高于4 mS / m时,该峰将大大增加。峰值频率的电导率依赖性显示出意外的非线性行为。在20 MHz附近发现了由电子共振引起的另一个峰值。额外的线圈或电容器移动了共振峰,使我们能够确定阵列的电子特性。对由驱动信号的谐波含量引起的泵浦频谱畸变的分析表明,泵浦方向取决于磁场的传播方向。对于交流场感应的粒子平移的测量,相对于通常使用的微观分析,PALS的优势在于它提供了一种客观的方法,可以对统计上显着的,计算机化的极慢运动进行配准。因此,对于介电特性,可以使用低场强,这不仅有利于分析液体泵送,而且有利于测量介电电泳或TW介电电泳引起的粒子平移。

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