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Ultra-stretchable and skin-mountable strain sensors using carbon nanotubes-Ecoflex nanocomposites

机译:使用碳纳米管-Ecoflex纳米复合材料的可拉伸和可皮肤贴装的应变传感器

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摘要

Super-stretchable, skin-mountable, and ultra-soft strain sensors are presented by using carbon nanotube percolation network-silicone rubber nanocomposite thin films. The applicability of the strain sensors as epidermal electronic systems, in which mechanical compliance like human skin and high stretchability (epsilon > 100%) are required, has been explored. The sensitivity of the strain sensors can be tuned by the number density of the carbon nanotube percolation network. The strain sensors show excellent hysteresis performance at different strain levels and rates with high linearity and small drift. We found that the carbon nanotube-silicone rubber based strain sensors possess super-stretchability and high reliability for strains as large as 500%. The nanocomposite thin films exhibit high robustness and excellent resistance-strain dependency for over similar to 1380% mechanical strain. Finally, we performed skin motion detection by mounting the strain sensors on different parts of the body. The maximum induced strain by the bending of the finger, wrist, and elbow was measured to be similar to 42%, 45% and 63%, respectively.
机译:通过使用碳纳米管渗滤网络-硅橡胶纳米复合薄膜,提出了超可拉伸,可皮肤贴装和超软应变传感器。已经探索了应变传感器作为表皮电子系统的应用,其中需要诸如人类皮肤的机械顺应性和高拉伸性(ε> 100%)。应变传感器的灵敏度可以通过碳纳米管渗滤网络的数量密度来调节。应变传感器在不同的应变水平和速率下具有出色的磁滞性能,具有高线性度和小漂移。我们发现基于碳纳米管-硅橡胶的应变传感器具有超拉伸性,并且对于高达500%的应变具有很高的可靠性。纳米复合薄膜表现出高的鲁棒性和出色的电阻应变相关性,超过1380%的机械应变。最后,我们通过将应变传感器安装在身体的不同部位来执行皮肤运动检测。手指,腕部和肘部弯曲引起的最大诱发应变测得分别接近42%,45%和63%。

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