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Development of a new class of on-skin radio-sensors boosted by thin polymer-based batteries

机译:聚合物薄电池推动的新型皮肤上无线电传感器的开发

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Conductive polymers are currently collecting interest for the development of low-profile eco-friendly and biocompatible non-metallic batteries capable of providing a local power source for the next-generation flexible body-integrated electronics. In this contribution, we demonstrate the feasibility of an organic ultrathin and multilayered polymer-based battery integrating a radiofrequency identification (RFID) tag antenna by means of an electromagnetic characterization in UHF band of the polymeric films. The optimally modeling of the battery plus the antenna aimed to develop a new class of shape-conformable radio-sensors suitable to adhere to the skin as a tattoo as well as a plaster. A prototype of the device was manufactured and its communication performances were characterized through the measurement of the realized gain of the tag attached directly onto a volunteer's skin.
机译:导电聚合物目前正在引起人们的兴趣,以开发薄型环保型和生物相容性非金属电池,这些电池能够为下一代柔性人体集成电子设备提供本地电源。在这项贡献中,我们通过聚合物薄膜的UHF波段中的电磁表征,证明了集成超薄射频和射频识别(RFID)标签天线的有机超薄多层聚合物电池的可行性。电池和天线的最佳建模旨在开发出一类新的形状适合的无线电传感器,该传感器适合作为纹身和灰泥粘附在皮肤上。制造了该设备的原型,并通过测量直接贴在志愿者皮肤上的标签的实际增益来表征其通信性能。

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