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大面积基于碳纳米管的柔性复合材料,用于超宽范围压力感应和空间压力测绘。

Large-Area Carbon Nanotube-Based Flexible Composites for Ultra-Wide Range Pressure Sensing and Spatial Pressure Mapping.

出版信息

ACS Appl Mater Interfaces. 2019 Dec 26;11(51):48370-48380. doi: 10.1021/acsami.9b17100. Epub 2019 Dec 11.

Abstract

Flexible pressure sensors are of broad interest for applications including human-machine interfaces, wearable electronics, and object/motion detection. However, complexities associated with constituent materials, fabrication processes, sensing mechanisms, and hardwiring often hinder the large-scale applications of using high performance pressure sensors reported in the literature. Here we demonstrate a large-area, highly flexible, conformable, and mechanically robust pressure sensor using a silicone elastomer with an embedded nonwoven textile carrier coated with carbon nanotubes. The selected silicone polymer allows through-thickness deformability of the sensor while the high modulus textile carrier ensures in-plane stiffness and stability. The sensor has an initial electrical conductivity of 4.4 ± 0.38 S/m and is fabricated using a straightforward dip coating and polymer infusion process and can be easily scaled-up for large-scale applications. On the basis of its hierarchical composite structure, this piezoresistive pressure sensor possesses extremely high resilience under compression, a repeatable monotonic positive pressure correlation, and an ultrawide elastic working range (5.5 ± 0.5 MPa) that can be segmentally linearized. A true two-dimensional modality for spatial pressure mapping is realized by utilizing electrical impedance tomography (EIT) and demonstrated to yield conductivity maps that can estimate the location, shape, and amplitude of both localized and distributed pressure with simple contact areas.

摘要

柔性压力传感器在人机界面、可穿戴电子设备和物体/运动检测等应用中具有广泛的应用前景。然而,与组成材料、制造工艺、传感机制和硬连线相关的复杂性常常阻碍了文献中报道的高性能压力传感器的大规模应用。在这里,我们使用一种嵌入有涂覆碳纳米管的无纺纺织品载体的硅酮弹性体展示了一种大面积、高灵活、顺应性好且机械坚固的压力传感器。所选择的硅酮聚合物允许传感器的厚度方向变形,而高模量的纺织载体则确保了平面内的刚度和稳定性。传感器的初始电导率为 4.4 ± 0.38 S/m,采用简单的浸涂和聚合物注入工艺制造,并且可以很容易地进行规模化以用于大规模应用。基于其分层复合结构,这种压阻式压力传感器在压缩下具有极高的弹性恢复能力、可重复的单调正压力相关性以及超宽的弹性工作范围(5.5 ± 0.5 MPa),可分段线性化。通过利用电阻抗断层成像(EIT)实现了真正的二维空间压力映射模式,并证明可以通过简单的接触面积来估计局部和分布式压力的位置、形状和幅度的电导率图。

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