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Inductively coupled nanocomposite wireless strain and pH sensors

机译:电感耦合纳米复合无线应变和pH传感器

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摘要

Recently, dense sensor instrumentation for structural health monitoring has motivated the need for novel passive wireless sensors that do not require a portable power source, such as batteries. Using a layer-by-layer self-assembly process, nano-structured multifunctional carbon nanotube-based thin film sensors of controlled morphology are fabricated. Through judicious selection of polyelectrolytic constituents, specific sensing transduction mechanisms can be encoded within these homogenous thin films. In this study, the thin films are specifically designed to change electrical properties to strain and pH stimulus. Validation of wireless communications is performed using traditional magnetic coil antennas of various turns for passive RFID (radio frequency identification) applications. Preliminary experimental results shown in this study have identified characteristic frequency and bandwidth changes in tandem with varying strain and pH, respectively. Finally, ongoing research is presented on the use of gold nanocolloids and carbon nanotubes during layer-by-layer assembly to fabricate highly conductive coil antennas for wireless communications.
机译:近来,用于结构健康监测的密集传感器仪器激发了对新型无源无线传感器的需求,该新型无源无线传感器不需要诸如电池的便携式电源。使用逐层自组装工艺,制造了形态可控的纳米结构多功能碳纳米管基薄膜传感器。通过明智地选择聚电解成分,可以在这些均质薄膜中编码特定的传感转导机制。在这项研究中,专门设计了薄膜以改变电特性,以适应应变和pH刺激。无线通信的验证是使用传统的各种匝数的电磁线圈天线进行的,以用于无源RFID(射频识别)应用。这项研究中显示的初步实验结果已经确定了特征频率和带宽随应变和pH值的变化而串联变化。最后,目前正在进行的研究是关于在逐层组装过程中使用金纳米胶体和碳纳米管来制造用于无线通信的高导电线圈天线的。

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