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Complementary Split-Ring Resonator-Loaded Microfluidic Ethanol Chemical Sensor

机译:补充开环谐振器的微流乙醇化学传感器

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摘要

In this paper, a complementary split-ring resonator (CSRR)-loaded patch is proposed as a microfluidic ethanol chemical sensor. The primary objective of this chemical sensor is to detect ethanol’s concentration. First, two tightly coupled concentric CSRRs loaded on a patch are realized on a Rogers RT/Duroid 5870 substrate, and then a microfluidic channel engraved on polydimethylsiloxane (PDMS) is integrated for ethanol chemical sensor applications. The resonant frequency of the structure before loading the microfluidic channel is 4.72 GHz. After loading the microfluidic channel, the 550 MHz shift in the resonant frequency is ascribed to the dielectric perturbation phenomenon when the ethanol concentration is varied from 0% to 100%. In order to assess the sensitivity range of our proposed sensor, various concentrations of ethanol are tested and analyzed. Our proposed sensor exhibits repeatability and successfully detects 10% ethanol as verified by the measurement set-up. It has created headway to a miniaturized, non-contact, low-cost, reliable, reusable, and easily fabricated design using extremely small liquid volumes.
机译:在本文中,提出了一种互补的开环谐振器(CSRR)加载的贴片作为微流乙醇化学传感器。这种化学传感器的主要目的是检测乙醇的浓度。首先,在Rogers RT / Duroid 5870基板上实现两个紧密耦合的同心CSRR加载到贴片上,然后将刻在聚二甲基硅氧烷(PDMS)上的微流体通道集成到乙醇化学传感器应用中。在加载微流体通道之前,结构的共振频率为4.72 GHz。加载微流体通道后,当乙醇浓度从0%变为100%时,谐振频率的550 MHz偏移归因于介电微扰现象。为了评估我们提出的传感器的灵敏度范围,测试并分析了各种浓度的乙醇。我们提出的传感器具有可重复性,并且可以通过测量设置成功地检测出10%的乙醇。它在使用极小液体量的小型化,非接触式,低成本,可靠,可重复使用且易于制造的设计方面取得了进展。

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