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Metamaterial-Inspired Microwave Microfluidic Sensor for Glucose Monitoring in Aqueous Solutions

机译:超材料启发微波微流体传感器,用于水溶液中的葡萄糖监测

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摘要

A high-sensitive microwave microfluidic sensor based on improved split ring resonator (SRR) for detecting glucose concentration in aqueous glucose solutions is proposed. The novel SRR design of the proposed sensor incorporates inter-digital capacitor (IDC) in the gap of the resonator for enhanced electric field concentration over a larger surface area, which provides higher sensitivity for testing of dielectric liquids. In order to facilitate the measurement of lossy fluids using the proposed sensor, a microfluidic channel is appropriately positioned over the IDC region of the SRR, through which the glucose solutions are made to pass. The microfluidic channel, made of polydimethylsiloxane (PDMS) is biocompatible, economical, which is customized to preserve the sample from external contamination. Aqueous solutions with glucose concentrations ranging from 0 to 5000 mg/dl are characterized based on the shift in the resonant frequency and the normalized peak attenuation of the SRR sensor. The measured sensitivity of the proposed PDMS integrated novel SRR sensor for glucose testing is found to be 2.60E-02 MHz/mgdl(-1), which is a fair improvement compared to earlier proposed sensors employing similar sensing methodologies. The applicability of the proposed sensor for quantitative analysis of aqueous glucose solutions is verified using both simulation and experimental procedures.
机译:提出了一种基于改进的分流环谐振器(SRR)的高敏感微波微流体传感器,用于检测葡萄糖溶液中的葡萄糖浓度。所提出的传感器的新型SRR设计包括数字电容器(IDC)在谐振器的间隙中,用于增强较大的表面积上的电场集中,这提供了更高的对介电液体测试的灵敏度。为了便于使用所提出的传感器测量损失的流体,微流体通道适当地定位在SRR的IDC区域上,通过该区域通过该IDC区域通过该孔溶液通过该孔。由聚二甲基硅氧烷(PDMS)制成的微流体通道是生物相容性的,经济的,其定制以保护来自外部污染的样品。基于谐振频率的偏移和SRR传感器的标准化峰值衰减,表征葡萄糖浓度的水溶液。所提出的PDMS综合新型SRR传感器用于葡萄糖测试的测量灵敏度是2.60E-02MHz / MGDL(-1),与采用类似传感方法的早期提出的传感器相比,这是一个公平的改进。使用模拟和实验程序验证所提出的传感器用于定量分析含水葡萄糖溶液的分析。

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