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Polymeric sensing material-based selectivity-enhanced RF resonant cavity sensor for volatile organic compound (VOC) detection

机译:基于聚合物传感材料的选择性增强RF谐振腔传感器,用于挥发性有机化合物(VOC)检测

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This paper presents a novel approach to in-line chemical gas flow monitoring, employing a high-Q RF resonator coated with a polymeric sensing material. The polymeric sensing materials employed are OV-275 and P25DMA doped with 20% NiO. These materials are known to be responsive against various VCOs, and are individually coated on the post of a combline cavity resonator to help functionalize the sensor against specific analytes. The input of the resonator was deliberately designed to achieve the minimal loading to maximize the loaded Q of the resonator, thereby improving its sensitivity near its f. The OV-275 sensor demonstrates sensitivity of 2.332 mdB/ppm and 0.348 mdB/ppm to acetone and benzene exposure, respectively. Similarly, the P25DMA sensor has a sensitivity of 0.199 mdB/ppm and 0.764 mdB/ppm to acetone and benzene, respectively.
机译:本文提出了一种在线化学气体流量监测的新方法,该方法采用涂覆有聚合物传感材料的高Q RF谐振器。所使用的聚合物感测材料是掺杂有20%NiO的OV-275和P25DMA。已知这些材料对各种VCO具有响应性,并且分别涂覆在梳状腔谐振器的柱子上,以帮助传感器针对特定的分析物进行功能化。谐振器的输入经过精心设计,以实现最小负载,以使谐振器的已加载Q值最大化,从而提高其在f附近的灵敏度。 OV-275传感器对丙酮和苯的敏感度分别为2.332 mdB / ppm和0.348 mdB / ppm。同样,P25DMA传感器对丙酮和苯的灵敏度分别为0.199 mdB / ppm和0.764 mdB / ppm。

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