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Electrowetting of ionic liquids and development of an electrowetting based tunable RC filter and its uses as an analytical detector.

机译:离子液体的电润湿以及基于电润湿的可调谐RC滤波器的开发及其作为分析检测器的用途。

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摘要

Wettability control of a liquid drop by an external electric field or "electrowetting" recently was the subject of special interest among researchers due to its utility for a variety of applications. Some of these include "electrowetting on dielectric (EWOD)" based digital microfluidic lab-on-a-chip devices, EWOD lenses and EWOD displays. In these EWOD based devices, water or aqueous electrolytes are used as the liquid medium. However, the use of water or aqueous electrolytes has several limitations and may reduce the efficiency as well as accuracy of these devices. Low thermal stability, evaporation, fouling and fixed physiochemical properties are a few of the drawbacks of water and aqueous electrolytes. To overcome these limitations the alternative use of ionic liquids (ILs) in EWOD based devices are suggested in this dissertation.;ILs are a special class of non-molecular liquids, which do not evaporate. High thermal stability and tunable physiochemical properties are few of the other unique properties of ILs. In order to use in EWOD based devices, the electrowetting properties of 19 different ILs were examined under DC voltage conditions. All tested ILs showed electrowetting of various magnitudes on an amorphous flouropolymer layer. The effects of IL structure, functionality, and charge density on the electrowetting properties were studied. Compared to water and aqueous electrolytes, ILs showed enhanced stability at higher voltages.;With the obtained clear knowledge of electrowetting behavior of ILs under DC voltage conditions, electrowetting behavior of ILs under AC voltage conditions were examined. Nine different ILs at 3 different AC frequencies (60 Hz, 1 kHz, 10 kHz) were investigated experimentally. The electrowetting properties of ILs were found to be directly related to the frequency of the AC voltage. These relationships were further analyzed and explained theoretically. The electrowetting properties of ILs under AC voltages were compared to that under DC voltages. All tested ILs showed greater apparent contact angle changes with AC voltage conditions than with DC voltage conditions. The effect of structure and charge density also were examined. Electrowetting reversibility of ILs under AC voltage conditions was studied. The physical properties of ILs and their electrowetting properties under both DC and AC voltage conditions were tabulated in order to use as references for the engineering of task-specific electrowetting agents (ILs) for future EWOD based applications. Further, the study showed that in AC voltage conditions, an EWOD experimental setup acts as a liquid RC filter.;Also the study revealed that, the cut-off frequency (fC ) of this type of RC filter is a function of conductivity, dielectric constant, surface tension and double layer thickness of the liquid as well as the applied voltage. That relationship was used to develop a tunable RC filter and an analytical detector. Industrial biocides with different solvents were used to test the performance of this detector. Low limits of detections were achieved for the tested biocides and the detector seems to be broadly applicable and have very low fabrication costs.
机译:通过外部电场或“电润湿”控制液滴的润湿性,由于其在多种应用中的效用,最近引起了研究人员的特别关注。其中一些包括基于“电介质上电润湿(EWOD)”的数字微流体芯片实验室设备,EWOD透镜和EWOD显示器。在这些基于EWOD的装置中,水或水性电解质被用作液体介质。但是,使用水或水性电解质有一些局限性,并且可能会降低这些设备的效率和准确性。低的热稳定性,蒸发,结垢和固定的物理化学性质是水和水性电解质的一些缺点。为了克服这些限制,本文建议在基于EWOD的设备中替代使用离子液体(ILs)。; ILs是一类特殊的非分子液体,不会蒸发。 IL的其他独特特性中很少有高的热稳定性和可调节的理化特性。为了在基于EWOD的设备中使用,在DC电压条件下检查了19种不同IL的电润湿特性。所有测试的ILs在非晶态含氟聚合物层上均显示出各种程度的电润湿。研究了IL结构,功能和电荷密度对电润湿性能的影响。与水和水性电解质相比,离子液体在更高的电压下显示出增强的稳定性。;有了对直流电压条件下离子液体的电润湿行为的清楚了解,就可以研究离子液体在交流电压条件下的电润湿行为。实验研究了3种不同AC频率(60 Hz,1 kHz,10 kHz)下的9种不同IL。发现IL的电润湿特性与AC电压的频率直接相关。这些关系在理论上作了进一步分析和解释。将IL在交流电压下的电润湿特性与在直流电压下的电润湿特性进行了比较。与交流电压条件相比,所有测试的离子液体在交流电压条件下均表现出更大的视在接触角变化。还检查了结构和电荷密度的影响。研究了在交流电压条件下离子液体的电润湿可逆性。表中列出了IL的物理特性及其在DC和AC电压条件下的电润湿特性,以用作将来基于EWOD的应用的任务专用电润湿剂(IL)工程的参考。此外,研究表明,在交流电压条件下,EWOD实验装置可以用作液体RC滤波器;此外,研究还表明,这种RC滤波器的截止频率(fC)是电导率,电介质的函数常数,液体的表面张力和双层厚度以及施加的电压。这种关系被用来开发可调谐的RC滤波器和分析检测器。使用具有不同溶剂的工业杀菌剂来测试该检测器的性能。对于所测试的杀生物剂,检测限很低,该检测器似乎可以广泛应用并且制造成本非常低。

著录项

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Chemistry Analytical.;Chemistry Physical.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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