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A Remote Sensor for Detecting Methane Based on Palladium-Decorated Single Walled Carbon Nanotubes

机译:基于钯装饰的单壁碳纳米管的甲烷检测远程传感器

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摘要

The remote detection of the concentration of methane at room temperature is performed by a sensor that is configured by the combination of radio frequency identification (RFID), and functionalized carbon nanotubes (CNTs). The proposed sensor is schemed as a thin film RFID tag in a polyethylene substrate, on which a metal trace dipole, a metal trace T impedance matching networks, a 0.5 μm-CMOS RF/DC rectifier chipset and a sensor head of palladium-decorated single walled carbon nanotubes (Pd-SWCNTs) are surface mounted in cascade. The performances of the sensor are examined and described by the defined parameters of the received signal strength index (RSSI) and the comparative analog identifier (ΔAID). Results validate the sensor's ability to detect molecules of methane at room temperature, showing that the RSSI can increase 4 dB and the ΔAID can increase 3% in response to methane concentrations ranging from zero to 100 ppm.
机译:室温下甲烷浓度的远程检测由传感器执行,该传感器由射频识别(RFID)和功能化的碳纳米管(CNT)组合而成。拟议中的传感器被设计为在聚乙烯基片中的薄膜RFID标签,其上有金属迹线偶极子,金属迹线T阻抗匹配网络,0.5μm-CMOSRF / DC整流器芯片组和钯装饰的单个传感器头壁式碳纳米管(Pd-SWCNTs)级联安装在表面。传感器的性能通过接收信号强度指数(RSSI)和比较模拟标识符(ΔAID)的定义参数进行检查和描述。结果验证了传感器在室温下检测甲烷分子的能力,表明RSSI可以增加4 dB,而ΔAID可以增加3%,以响应从零到100 ppm的甲烷浓度。

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