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Highly sensitive and selective multidimensional resistive strain sensors based on a stiffness-variant stretchable substrate

机译:和选择性多维高度敏感基于电阻应变传感器stiffness-variant柔性衬底

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摘要

Highly stretchable strain sensors that are capable of collecting complex multi-axial, multidimensional strain information in real time are crucial in practical applications for human motion detection. Here we present a highly sensitive and selective multidimensional resistive strain sensor based on a monolithic integration of a stiffness-variant stretchable substrate and sensing film comprising a cross-shaped silver nanowire percolation network in a single device. The multidimensional strain sensor efficiently distinguishes strains in various directions with a large gauge factor (GF) of 20 and a wide strain-detectable range of up to 60. The sensor also features a maximum difference in GF between the x- and y-axes of 20 and long-term performance stability for up to 500 strain cycles. The practicality of the sensor as a human motion detector is demonstrated by attaching it directly to a part of the human body and measuring the multidimensional strains that occur during motions in real time.
机译:高度可伸缩的应变传感器能够收集复杂的多,多维实时应变信息实际应用对人类是至关重要的运动检测。敏感和选择性多维基于单片电阻应变传感器集成stiffness-variant可伸缩的衬底和传感膜组成十字形的银纳米线渗流网络在一个单一的设备。传感器有效区分菌株不同方向的大应变系数(GF)在20和strain-detectable范围宽上升到60%。不同的x - y轴之间的女朋友在20和长期性能稳定500株周期。传感器作为人类运动检测器通过将它直接附加到人类的一部分身体和测量多维菌株实时运动期间发生的。

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