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An Mxene-Edot Nanocomposite Based Strain Sensor Patch for Wireless Human Motion Monitoring

机译:基于MXENE-ESTOT纳米复合材料的无线人体运动监测的应变传感器贴片

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It is highly demanded to develop flexible strain sensors with high sensitivity, a wide working range, and excellent reliability. We newly applied 3,4-ethylene dioxythiophene (EDOT) in-situ polymerization self-assembly on MXene-Ti3C2Tx flakes in an aqueous solution in order to simultaneously improve both the sensitivity and working range of the strain sensor patch. MXene-Ti3C2Tx@EDOT was uniformly deposited on the laser-induced graphene (LIG) embedded styrene ethylene butylene styrene (SEBS) stretchable substrate by electrophoretic deposition without any oxidants. The as-fabricated sensor can detect minute to large deformations with high GF up to 2075, large strain range (>28%), and excellent reliability (>20000 cycles). A flexible battery-free near field communication (NFC) wireless system was developed and transmit measurements to a smartphone.
机译:非常有要求开发具有高灵敏度,宽工作范围和优异可靠性的灵活应变传感器。我们将3,4-乙烯二氧噻吩(Edot)在MXENE-TI上的原位聚合自组装施用 3 C 2 T. x 在水溶液中薄片,以同时改善应变传感器贴片的灵敏度和工作范围。 mxene-ti. 3 C 2 T. x @Edot通过电泳沉积均匀地沉积在激光诱导的石墨烯(Lig)嵌入式苯乙烯乙烯丁烯苯乙烯(SEBBS)伸展基材上,没有任何氧化剂。制造的传感器可以检测分钟,高于GF的大变形,高达2075,大小的应变范围(> 28%)和优异的可靠性(> 20000循环)。开发了一种无柔性的无线电池近场通信(NFC)无线系统并将测量传输到智能手机。

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