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High-Sensitivity Microwave Metamaterials Sensor Absorber for Chemical Liquids Detection

机译:用于化学液体检测的高灵敏度微波超材料传感器吸收器

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A metamaterial (MTM) absorber-based chemical sensor is realized both numerically and experimentally by incorporating swastika shaped resonator in X-band frequency range (8-12 GHz). The proposed sensors can be used to measure the electrical characteristics of chemical liquids namely, acetone, methanol, ethanol, Polyethylene Glycol 300 (PEG 300), water, ethanol mixed with water and methanol mixed with water. The structure composed three main layers, from the top to bottom as follows: swastika shaped resonator, FR4 substrate and ground layer, between the copper ground film and backside resonator have an air gap to put chemical liquids. We used CST Microwave Studio to get the simulated results and observe the absorption spectrum. In this work to measure experimental studies vector network analyzer (VNA) and a dielectric probe kit are used to determine the dielectric constants and dielectric loss factor of the selected samples in the related frequency range. According to the simulated results, there is a highly different in the absorption spectrum between each liquid and the shifting total resonance frequency indicated the accurate information to estimate the density of the sensing water mixture with ethanol and methanol In the electrochemical approach, the proposed sensor structure can be improving to detect the different chemical liquids
机译:通过在X波段频率范围(8-12 GHz)中加入十字形谐振器,可以在数值和实验上实现基于超材料(MTM)吸收剂的化学传感器。所提出的传感器可用于测量化学液体的电气特性,这些化学液体包括丙酮,甲醇,乙醇,聚乙二醇300(PEG 300),水,与水混合的乙醇和与水混合的甲醇。该结构由三个主要层组成,从上到下依次为:十字形谐振器,FR4基板和接地层,铜接地膜和背面谐振器之间有气隙以放置化学液体。我们使用CST Microwave Studio来获得模拟结果并观察吸收光谱。在这项测量实验研究的工作中,矢量网络分析仪(VNA)和介电探针套件用于确定相关频率范围内所选样品的介电常数和介电损耗因子。根据模拟结果,每种液体之间的吸收光谱存在很大差异,并且移动的总共振频率不断变化,表明准确的信息可以估算含乙醇和甲醇的感测水混合物的密度。在电化学方法中,提出的传感器结构可以改进以检测不同的化学液体

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