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Highly sensitive, tunable, and durable gold nanosheet strain sensors for human motion detection

机译:高灵敏,可调和耐用的金纳米片应变传感器,用于人体运动检测

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We report highly sensitive, tunable, and durable strain sensors based on a simple structure consisting of a multilayered film of gold (Au) nanosheets as a sensing layer on a highly stretchable Ecoflex substrate. The high sensitivity of the sensor at different levels of strain was achieved by controlling the stacking number of micrometer-sized Au nanosheets with a thickness of similar to 20 nm, which enabled the control of piezoresisitivity of the sensing layer through the change in contact resistance between Au nanosheets under mechanical bending and stretching. The Au nanosheet-based strain sensors exhibited excellent electrical stability without degradation in sensing-performance even after 10 000 stretching cycles. Our highly sensitive, reproducible, tunable, and durable strain sensors were demonstrated to monitor large-scale body motions such as bending, walking, jumping, and squatting, as well as to detect small skin strains induced by minute movements of muscles upon breathing, speaking, and coughing.
机译:我们报告了一种基于简单结构的高度灵敏,可调且耐用的应变传感器,该结构由金(Au)纳米片的多层膜组成,可作为高度可拉伸的Ecoflex基板上的传感层。通过控制厚度类似于20 nm的微米级Au纳米片的堆叠数量,可以实现传感器在不同应变水平下的高灵敏度,这使得能够通过改变电阻之间的接触电阻来控制传感层的压阻性金纳米片在机械弯曲和拉伸下。基于金纳米片的应变传感器表现出出色的电稳定性,即使经过一万次拉伸循环后,传感性能也不会降低。我们的高灵敏性,可再现性,可调性和耐用性的应变传感器经证实可监测大规模的身体运动,例如弯曲,行走,跳跃和下蹲,以及检测呼吸时肌肉微小运动引起的微小皮肤应变。和咳嗽。

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