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由倾斜微柱阵列增强的柔性电容式压力传感器

Flexible Capacitive Pressure Sensor Enhanced by Tilted Micropillar Arrays.

作者信息

Luo Yongsong, Shao Jinyou, Chen Shouren, Chen Xiaoliang, Tian Hongmiao, Li Xiangming, Wang Liang, Wang Duorui, Lu Bingheng

机构信息

Micro- and Nano-Technology Research Center, State Key Laboratory for Manufacturing Systems Engineering , Xi'an Jiaotong University , Xi'an , Shaanxi 710049 , China.

出版信息

ACS Appl Mater Interfaces. 2019 May 15;11(19):17796-17803. doi: 10.1021/acsami.9b03718. Epub 2019 May 1.

Abstract

Sensitivity of the sensor is of great importance in practical applications of wearable electronics or smart robotics. In the present study, a capacitive sensor enhanced by a tilted micropillar array-structured dielectric layer is developed. Because the tilted micropillars undergo bending deformation rather than compression deformation, the distance between the electrodes is easier to change, even discarding the contribution of the air gap at the interface of the structured dielectric layer and the electrode, thus resulting in high pressure sensitivity (0.42 kPa) and very small detection limit (1 Pa). In addition, eliminating the presence of uncertain air gap, the dielectric layer is strongly bonded with the electrode, which makes the structure robust and endows the sensor with high stability and reliable capacitance response. These characteristics allow the device to remain in normal use without the need for repair or replacement despite mechanical damage. Moreover, the proposed sensor can be tailored to any size and shape, which is further demonstrated in wearable application. This work provides a new strategy for sensors that are required to be sensitive and reliable in actual applications.

摘要

传感器的灵敏度在可穿戴电子设备或智能机器人的实际应用中至关重要。在本研究中,开发了一种由倾斜微柱阵列结构介电层增强的电容式传感器。由于倾斜的微柱发生弯曲变形而非压缩变形,电极之间的距离更容易改变,甚至不考虑结构化介电层与电极界面处气隙的贡献,从而导致高压灵敏度(0.42 kPa)和非常小的检测限(1 Pa)。此外,消除了不确定气隙的存在,介电层与电极牢固结合,这使得结构坚固,并赋予传感器高稳定性和可靠的电容响应。这些特性使该设备即使受到机械损坏也能正常使用而无需维修或更换。此外,所提出的传感器可以定制成任何尺寸和形状,这在可穿戴应用中得到了进一步证明。这项工作为实际应用中需要灵敏可靠的传感器提供了一种新策略。

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