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基于超薄有序纳米锥阵列薄膜的高灵敏度互锁压阻传感器及其灵敏度模拟

Highly Sensitive Interlocked Piezoresistive Sensors Based on Ultrathin Ordered Nanocone Array Films and Their Sensitivity Simulation.

作者信息

Lu Yawen, He Yin, Qiao Jutao, Niu Xin, Li Xiaojiu, Liu Hao, Liu Li

机构信息

School of Textiles Science and Engineering, Tiangong University, Tianjin 300387, China.

Institute of Smart Wearable Electronic Textiles, Tiangong University, Tianjin 300387, China.

出版信息

ACS Appl Mater Interfaces. 2020 Dec 9;12(49):55169-55180. doi: 10.1021/acsami.0c16456. Epub 2020 Nov 30.

Abstract

Achieving a continuously adjustable micro-nanostructure of sensing materials is crucial and still a challenge for the flexible pressure sensor. We proposed a new method to prepare ultrathin ordered nanocone array films by designing tunable tapered anodized aluminum oxide templates and to prepare highly sensitive flexible pressure sensors by the interlocking nanocone arrays. Meanwhile, the theoretical prediction model of the sensitivity of interlocked nanocone arrays is proposed, and its result shows that the resistance change rate is positively correlated with the height of interlocked nanocone arrays and the contact area between interlocked nanocones. According to the finite element simulation and experimental results, the interlocked ordered nanocone array pressure sensor exhibits a high sensitivity of 268.36 kPa in the pressure range of 0-200 Pa, an ultralow detection limit of 0.98 Pa, a fast response/recovery time of 48/56 ms, a low hysteresis of ±3.156%, stability under 5000 cycles of loading, and continuity and repeatability under different loads and loading speeds. Furthermore, the pressure sensor can accurately monitor weak wind velocities, wrist torsion and bending movement, and book opening and closing angles. The sensor has broad application prospects in wearable medical monitoring, electronic skin, and human-computer interaction.

摘要

实现传感材料连续可调的微纳结构对于柔性压力传感器至关重要,且仍然是一项挑战。我们提出了一种新方法,通过设计可调谐的锥形阳极氧化铝模板来制备超薄有序纳米锥阵列薄膜,并通过互锁纳米锥阵列制备高灵敏度柔性压力传感器。同时,提出了互锁纳米锥阵列灵敏度的理论预测模型,结果表明电阻变化率与互锁纳米锥阵列的高度以及互锁纳米锥之间的接触面积呈正相关。根据有限元模拟和实验结果,互锁有序纳米锥阵列压力传感器在0 - 200 Pa压力范围内具有268.36 kPa的高灵敏度、0.98 Pa的超低检测限、48/56 ms的快速响应/恢复时间、±3.156%的低滞后、5000次加载循环下的稳定性以及不同负载和加载速度下的连续性和重复性。此外,该压力传感器能够准确监测弱风速、手腕扭转和弯曲运动以及书本开合角度。该传感器在可穿戴医疗监测、电子皮肤和人机交互方面具有广阔的应用前景。

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