首页> 外文会议>IEEE MTT-S International Microwave Workshop Series on Advanced Materials and Processes for RF and THz Applications >A palladium decorated signal walled carbon nanotube enabled chipless sensor for detecting methane at room temperature based on UWB-RFID system
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A palladium decorated signal walled carbon nanotube enabled chipless sensor for detecting methane at room temperature based on UWB-RFID system

机译:钯装饰信号壁碳纳米管,支持基于UWB-RFID系统的室温下检测甲烷的芯片型传感器

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In order to detect methane at room temperature, a chipless methane sensor in ultra-wideband radio frequency identification (UWB-RFID) is designed in the paper. The proposed sensor is a type of thin film equipped by an antenna and a nano-technique enabled sensor head. The antenna is a planar patch with arc typed edge loaded by lumped circuit for impedance matching; the sensor head is an electrode with interdigitated fingers (IDE) loaded by the palladium decorated single walled carbon nanotubes (Pd-SWCNTs). The performance of the proposed sensor is validated by the analytical and numerical analyses in terms of a predefined scenario where the concentration of methane is increased from 0ppm to 100ppm at room temperature. Results show that, if the sensor is geometrized in the mechanism of amplitude modulation of band-gap, the identifiable sensitivity can achieve -9.32dB; on the contrary, if it is geometrized in the mechanism of frequency modulation of band-gap, the identifiable sensitivity can achieve a little bit high by -11.30dB.
机译:为了在室温下检测甲烷,在纸上设计了超宽带射频识别(UWB-RFID)中的芯片甲烷传感器。所提出的传感器是一种由天线配备的薄膜和纳米技术的传感器头。天线是一个平面贴片,其具有由集体电路加载的电弧类型边缘,用于阻抗匹配;传感器头是具有由钯装饰的单壁碳纳米管(PD-SWCNT)的钯装饰的交叉指状指的电极(IDE)。所提出的传感器的性能由分析和数值分析验证,在预定场景中,甲烷浓度在室温下从0ppm升高至100ppm而言。结果表明,如果传感器在带隙的幅度调制机制中是几何化的,则可识别的灵敏度可以实现-9.32dB;相反,如果在带隙的频率调节机制中,可识别的灵敏度可以达到-11.30db的识别灵敏度。

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