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A Microfluidic-Integrated SIW Lab-on-Substrate Sensor for Microliter Liquid Characterization

机译:用于微升液体表征的微流体集成SIW实验室在衬底上的传感器

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摘要

A novel microfluidic-integrated microwave sensor with potential application in microliter-volume biological/ biomedical liquid sample characterization and quantification is presented in this paper. The sensor is designed based on the resonance method, providing the best sensing accuracy, and implemented by using a substrate-integrated-waveguide (SIW) structure combining with a rectangular slot antenna operating at 10 GHz. The device can perform accurate characterization of various liquid materials from very low to high loss, demonstrated by the measurement of deionized water and methanol liquid mixtures. The measured relative permittivity, which is the real part of complex permittivity, ranges from 8.58 to 66.12, which is simply limited by the choice of test materials available in our laboratory, not any other technical considerations of the sensor. The fabricated sensor prototype requires a very small liquid volume of less than 7 μL, while still offering an overall accuracy of better than 3%, as compared with the commercial and other published works. The key advantages of the proposed sensor are that it combines: a very low-profile planar and miniaturized structure sensing microliter liquid volume; ease of design and fabrication, which makes it cost-effective to manufacture; and noninvasive and contactless measurements. Moreover, since the microfluidic subsystem can potentially be detached from the SIW microwave sensor and, afterward, replaced by a new microfluidic component, the sensor can be reused with no life-cycle limitation and without degrading any figure of merit.
机译:本文提出了一种新型的微流体集成微波传感器,该传感器在微升体积的生物/生物医学液体样品的表征和定量中具有潜在的应用前景。该传感器基于共振方法进行设计,可提供最佳的传感精度,并通过结合使用衬底集成波导(SIW)结构和工作在10 GHz的矩形缝隙天线来实现。该设备可以对各种液体材料进行精确的表征,从极低的损失到高的损失,通过去离子水和甲醇液体混合物的测量证明。测得的相对介电常数是复数介电常数的真实部分,范围为8.58至66.12,这仅受我们实验室中可用测试材料的选择限制,而不是传感器的任何其他技术考虑。与商业和其他已发表的作品相比,制造的传感器原型需要非常小的液体体积,小于7μL,同时仍提供优于3%的整体精度。所提出的传感器的主要优点是它具有以下优点:非常薄的平面和微型结构,可检测微升液体体积;设计和制造容易,使制造具有成本效益;以及非侵入性和非接触式测量。而且,由于微流体子系统可以潜在地与SIW微波传感器分离,然后再被新的微流体组件所取代,因此该传感器可以无生命周期限制地使用,并且不会降低任何品质因数。

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