柔性无芯片RFID温度记忆传感器

Sheikh Dobir Hossain, Miguel A. Palacios Mora, Annatoma Arif, Bhushan Lohani, Robert C. Roberts
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引用次数: 3

摘要

这项工作提出了一种灵活的无芯片射频识别(RFID)记忆传感器,用于可定制的无线温度阈值检测。所开发的记忆传感器是由聚二甲基硅氧烷(PDMS)衬底和金属负载的三微通道互补分裂环谐振器构成的。我们通过通道注入共晶镓铟(EGaIn)液态金属合金和由葡萄籽油和椰子油两种常见食用油混合而成的复合油,从而形成一种可拉伸、可弯曲、可卷曲和可扭转的装置,适用于监测环境温度变化。采用3D打印模具设计基于微通道的柔性基板。该设计的几何形状具有新颖之处,在柔性衬底内具有微通道,可提供食品安全传感器。此外,通道内的材料可以存储较低温度的传感信息,从而消除了连续的温度监测。实验结果表明,该传感器可以在52°弯曲角范围内检测到4°C和8°C的温度阈值。本文还验证了该谐振器可以作为永久性温度记忆传感器。
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Flexible Chipless RFID Temperature Memory Sensor
This work presents a flexible and chipless radiofrequency identification (RFID) memory sensor for customizable temperature threshold detection wirelessly. The developed memory sensor is built with a polydimethylsiloxane (PDMS) substrate and metal loaded three microchannel based complementary split circular ring resonators. We inject Eutectic Gallium Indium (EGaIn) liquid metal alloy and composite oil composed of a mixture of two common cooking oils - grapeseed and coconut oil - through the channel results in a stretchable, bendable, rollable, and twistable device suitable for monitoring environmental temperature variation. 3D printed molds are used for designing the microchannel based flexible substrate. The geometry of the design has the novelty of having a microchannel inside a flexible substrate that offers food safe sensor. Moreover, the materials inside the channel can store sensing information for lower temperatures, eliminating continuous temperature monitoring. The experimental results of the fabricated prototype confirm the sensor can detect temperature thresholds of 4°C and 8°C up to 52° of bending angle. This paper also verifies the resonator can work as a permanent temperature memory sensor.
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