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Loop Antenna Driven Double Microwave Resonator-Based Sensors Incorporating PDMS Microchannels on Glass Substrates

机译:环路天线驱动的双微波谐振器基传感器在玻璃基板上结合PDMS MicroChannels

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摘要

Microwave resonator-based sensors offer low-cost, contactless, label-free sensing solutions in a variety of applications. Sensing is done by the observation of the shifts in resonant frequency of the sensor structure, which depends on resonator geometry, material and physical properties of the environment. It is observed that the readings can be significantly affected by changes in secondary physical parameters or sample localization on resonator. A double microwave resonator sensing system incorporating microchannels on glass substrates are proposed to address these challenges. PDMS microchannels bonded on glass substrates are mounted on split ring resonators fabricated via low-cost processes. Experiments are performed with glucose solutions of 1.4 mg/mL–3.0 mg/mL concentration range. Results confirm that the use of double resonators increase rejection of background noise, whereas microchannel use increases measurement stability. Overall measurement sensitivity is shown to be 0.92 MHz/(mg/mL). Further improvements are aimed with the bonding of microchannels directly on resonators fabricated on glass substrates.
机译:基于微波谐振器的传感器在各种应用中提供低成本,非接触式,无标签的无标签传感解决方案。通过观察传感器结构的谐振频率的变速器来完成传感,这取决于谐振器几何形状,材料和环境的物理性质。观察到,读数可以显着影响辅助物理参数的变化或谐振器上的样本定位的影响。提出了一种在玻璃基板上结合微通道的双微波谐振器传感系统,以解决这些挑战。在玻璃基板上粘合的PDM微通道安装在通过低成本过程制造的分体环谐振器上。用1.4mg / ml-3.0mg / ml浓度范围的葡萄糖溶液进行实验。结果证实,使用双谐振器增加了背景噪声的拒绝,而微通道使用会提高测量稳定性。总体测量敏感性显示为0.92MHz /(Mg / ml)。进一步的改进旨在通过直接在玻璃基板上制造的谐振器上粘接微通道。

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