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A highly sensitive and stress-direction-recognizing asterisk-shaped carbon nanotube strain sensor

机译:高度敏感和应激方向识别星号形状碳纳米管应变传感器

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Flexible strain sensors are recognized as a key component of electronic-skin technology. One of the important features for strain sensors is that they should be able to sensitively recognize the direction of the external stress to accurately detect the various motions of humans or matter. Herein, we successfully developed a directionally responsive piezoresistive strain sensor with asterisk-shaped CNT sensing electrodes to recognize the direction of an applied external stress, thereby overcoming some of the shortcomings of established sensors. Under 5% strain, the change in relative resistance of the sensor developed here differed by up to a factor of 24.5 for different orientations of the sensor electrode relative to the source of the stress, i.e., a high angular dependence of the sensing performance on the external stress direction was observed. In particular, the asterisk-shaped CNT strain sensors showed a super-linear relationship between response and strain for low strains of up to 5%, allowing them to provide a good sensing platform for recognizing micro-deformations. Finally, we demonstrated that our sensor could recognize the direction of the movement of an applied brush and the magnitude and direction of the tilt of a home-built joystick attached onto the sensor device.
机译:柔性应变传感器被识别为电子皮肤技术的关键组成部分。应变传感器的重要特征之一是它们应该能够灵敏地识别外部应力的方向,以准确地检测人类或物质的各种运动。这里,我们成功地开发了一种定向响应的压阻式应变传感器,具有星号形的CNT传感电极,以识别应用的外部应力的方向,从而克服了建立传感器的一些缺点。在5%的菌株下,对于传感器电极相对于应力源的不同取向,传感器的传感器的相对电阻的变化在于,传感器电极的不同方向,即对传感性能的高角度依赖性,传感器电极的不同取向达到24.5的因子。观察到外部应力方向。特别地,星号形的CNT菌株传感器显示出低至5%的低菌株之间的响应和菌株之间的超线性关系,允许它们提供良好的传感平台,用于识别微变形。最后,我们证明我们的传感器可以识别涂布刷的运动方向和附着在传感器装置上的自制操纵杆倾斜的幅度和方向。

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