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Wireless, Room Temperature Volatile Organic Compound Sensor Based on Polypyrrole Nanoparticle Immobilized Ultrahigh Frequency Radio Frequency Identification Tag

机译:基于聚吡咯纳米粒子固定化超高频射频识别标签的无线室温挥发性有机化合物传感器

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摘要

Due to rapid advances in technology which have contributed to the development of portable equipment, highly sensitive and selective sensor technology is in demand. In particular, many approaches to the modification of wireless sensor systems have been studied. Wireless systems have many advantages, including unobtrusive installation, high nodal densities, low cost, and potential commercial applications. In this study, we fabricated radio frequency identification (RFID)-based wireless sensor systems using carboxyl group functionalized polypyrrole (C-PPy) nanoparticles (NPs). The C-PPy NPs were synthesized via chemical oxidation copolymerization, and then their electrical and chemical properties were characterized by a variety of methods. The sensor system was composed of an RFID reader antenna and a sensor tag made from a commercially available ultrahigh frequency RFID tag coated with C-PPy NPs. The C-PPy NPs were covalently bonded to the tag to form a passive sensor. This type of sensor can be produced at a very low cost and exhibits ultrahigh sensitivity to ammonia, detecting concentrations as low as 0.1 ppm. These sensors operated wirelessly and maintained their sensing performance as they were deformed by bending and twisting. Due to their flexibility, these sensors may be used in wearable technologies for sensing gases.
机译:由于技术的飞速发展为便携式设备的发展做出了贡献,因此需要高灵敏度和选择性的传感器技术。特别地,已经研究了许多用于修改无线传感器系统的方法。无线系统具有许多优势,包括安装方便,节点密度高,成本低以及潜在的商业应用。在这项研究中,我们使用羧基官能化的聚吡咯(C-PPy)纳米粒子(NPs)制造了基于射频识别(RFID)的无线传感器系统。通过化学氧化共聚合成C-PPy NPs,然后通过多种方法对其电学和化学性质进行表征。该传感器系统由一个RFID阅读器天线和一个传感器标签组成,该传感器标签由涂有C-PPy NP的市售超高频RFID标签制成。 C-PPy NP与标签共价键结合,形成无源传感器。这种类型的传感器可以以非常低的成本生产,并且对氨具有超高的灵敏度,可检测低至0.1 ppm的浓度。这些传感器可以无线操作并在弯曲和扭曲变形时保持其传感性能。由于它们的灵活性,这些传感器可用于可穿戴技术中以检测气体。

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