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An impedimetric approach for accurate particle sizing using a microfluidic Coulter counter

机译:一种使用微流控库尔特计数器精确确定粒度的阻抗方法

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In this paper, we present the design, impedimetric characterization and testing of a microfabricated Coulter counter for particle size measurement that uses a pair of thin film coplanar Au/Ti electrodes. An electrical equivalent circuit model of the designed device is analyzed. Accurate measurement of particle size was achieved by operating the device at a frequency for which the overall impedance is dominated by the channel resistance. A combination of design features, including the use of a pair of sensing electrodes with a surface area of 100 μm by 435 μm, a spacing of 1785μm between the two sensing electrodes and a 350μm long microchannel, ensures that this resistance dominates over a range of relatively low frequencies. The device was characterized for NaCl electrolyte solutions with different ionic concentrations ranging from 10~(-5) to 0.1 M. Results proved that the resistive behavior of the sensor occurs over a range of relatively low frequencies for all tested concentrations. The Coulter counter was then used to detect 30μm polystyrene particles at a selected excitation frequency. Testing results demonstrated that the device can accurately measure particle sizes with small error. The design can be extended to ac Coulter counters with sub-micron sensing channels. Analysis of three designs of ac Coulter counters including sub-micron sensing channels using the electrical equivalent circuit model predicts that they can be operated at even lower frequencies, to accurately size nanoscale particles.
机译:在本文中,我们介绍了使用一对薄膜共面Au / Ti电极进行粒度测量的微型Coulter计数器的设计,阻抗表征和测试。分析了所设计设备的等效电路模型。通过以一定的频率操作该器件,可以实现对粒度的精确测量,在该频率下,总阻抗主要由通道电阻决定。设计功能的组合,包括使用一对表面积为100μmx 435μm的感应电极,两个感应电极之间的间距为1785μm和长为350μm的微通道,可确保该电阻在以下范围内占主导地位相对较低的频率。该设备针对离子浓度范围从10〜(-5)至0.1 M的NaCl电解质溶液进行了表征。结果证明,对于所有测试浓度,传感器的电阻行为都在相对较低的频率范围内发生。然后使用库尔特计数器以选定的激发频率检测30μm的聚苯乙烯颗粒。测试结果表明,该设备可以准确测量粒径,误差很小。该设计可以扩展到具有亚微米感测通道的交流库尔特计数器。使用等效电路模型对包括亚微米级感应通道的ac Coulter计数器的三种设计进行的分析预测,它们可以在更低的频率下运行,以精确地确定纳米级颗粒的尺寸。

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