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首页> 外文期刊>ACS applied materials & interfaces >Bioinspired, High-Sensitivity Mechanical Sensors Realized with Hexagonal Microcolumnar Arrays Coated with Ultrasonic-Sprayed Single-Walled Carbon Nanotubes
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Bioinspired, High-Sensitivity Mechanical Sensors Realized with Hexagonal Microcolumnar Arrays Coated with Ultrasonic-Sprayed Single-Walled Carbon Nanotubes

机译:Bioinspired,高灵敏度机械传感器实现,覆盖超声波喷涂的单壁碳纳米管涂有六边形微柱阵列

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摘要

The development of a flexible electronic skin (e-skin) highly sensitive to multimodal vibrations and a specialized sensing ability is of great interest for a plethora of applications, such as tactile sensors for robots, seismology, healthcare, and wearable electronics. Here, we present an e-skin design characterized by a bioinspired, microhexagonal structure coated with single-walled carbon nanotubes (SWCNTs) using an ultrasonic spray method. We have demonstrated the outstanding performances of the device in terms of the capability to detect both static and dynamic mechanical stimuli including pressure, shear displacement, and bending using the principles of piezoresistivity. Because of the hexagonal microcolumnar array, whose contact area changes according to the mechanical stimuli applied, the interlock-optimized geometry shows an enhanced sensitivity. This produces an improved ability to discriminate the different mechanical stimuli that might be applied. Moreover, we show that our e-skins can detect, discriminate, and monitor various intensities of different external and internal vibrations, which is a useful asset for various applications, such as seismology, smart phones, wearable human skins (voice monitoring), etc.
机译:对多模式振动的柔性电子皮肤(E-SKIN)的开发具有极敏感的多模式振动和专业的传感能力对血清应用具有极大的兴趣,例如用于机器人,地震学,医疗保健和可穿戴电子产品的触觉传感器。在这里,我们提出了一种通过使用超声波喷射方法涂覆有单壁碳纳米管(SWCNT)的生物悬浮的微越曲面结构的电子皮肤设计。我们在检测静态和动态机械刺激的能力方面证明了该装置的出色性能,包括使用压阻性原理的压力,剪切位移和弯曲的静态和动态机械刺激。由于六边形微柱阵列,其接触面积根据所施加的机械刺激而改变,互锁优化的几何形状显示增强的灵敏度。这产生了改进的区分可能应用的不同机械刺激的能力。此外,我们表明我们的电子皮肤可以检测,区分和监测不同外部和内部振动的各种强度,这是各种应用的有用资产,如地震学,智能手机,可穿戴人类皮肤(语音监测)等。 。

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