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Soft gold nanowire sponge antenna for battery-free wireless pressure sensors

机译:软黄金纳米线海绵battery-free天线无线压力传感器

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The past decade has witnessed growing interest in developing soft wearable pressure sensors with the ultimate goal of transforming today's hospital-centered diagnosis to tomorrow's patient-centered bio-diagnosis. In this context, battery-free wireless antenna-based pressure sensors will be highly advantageous for ubiquitous real-time health monitoring. However, current wireless antennas are largely based on thin films from traditional bulk metallic films or novel nanomaterials with an air-cavity design, which can only be operated in a limited pressure range due to the rigidity of active films and/or inherent cavity dimensions. Herein we report a soft battery-free wireless pressure sensor that is based on a three-dimensional (3D) porous gold nanowire foam-elastomer composite and is fabricated by solution-based conformal electroless plating technology, followed by elastomer encapsulation. We observe a transducer trade-off point for our foam antenna, below which the inductive effect and capacitive effect function together and above which the capacitive effect dominates. When an external pressure is applied, initially the inductance and capacitance increase simultaneously but the capacitance decreases afterwards. This can be transformed into a variable resonant frequency that first decreases linearly and then increases (in the capacitance domination pressure range). Importantly, the linear detection range of the sensor can be tuned simply by adjusting the thickness of the sponge or the rigidity of the elastomer (PDMS). We can achieve a wide pressure range of 0-248 kPa, which is the largest linear detection range reported in the literature (typically from 0 to 30 kPa) to the best of our knowledge. As a proof of concept, we further demonstrated that our gold nanowire foam sensor can be used to weigh people under both static and dynamic conditions.
机译:过去的十年目睹了越来越感兴趣发展软可穿戴式压力传感器把今天的终极目标明天的hospital-centered诊断以病人为中心的bio-diagnosis。battery-free无线antenna-based压力传感器将是非常有利的无处不在的实时健康监测。当前无线天线,很大程度上都是基于从传统电影大部分金属薄膜或与气腔设计新颖的纳米材料,只能在一个有限的压力范围的刚性和/或活跃的电影内在的空腔尺寸。软battery-free无线压力传感器是基于一个三维(3 d)多孔金纳米线foam-elastomer组合并所使用的为基础的解决方案正形化学镀技术,紧随其后弹性体封装。权衡点泡沫天线,下面哪个诱导效应和电容效应函数在一起,上面电容效应占主导地位。最初,电感和电容同时增加但电容减少之后。到一个变量第一共振频率(在线性降低,然后增加电容控制压力范围)。重要的是,的线性检测范围传感器可以简单地通过调整来调谐海绵的厚度或刚性的弹性体(PDMS)。范围0 - 248 kPa,最大的是线性的探测范围在文献中报道(通常从0到30 kPa)最好的我们知识。证明我们的金纳米线泡沫传感器可以用来衡量静态和以下的人吗动态条件。

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