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用于自供电静动态压力检测和触觉成像的摩擦电活性传感器阵列。

Triboelectric active sensor array for self-powered static and dynamic pressure detection and tactile imaging.

机构信息

School of Materials Science and Engineering, Georgia Institute of Technology , Atlanta, Georgia 30332-0245, United States.

出版信息

ACS Nano. 2013 Sep 24;7(9):8266-74. doi: 10.1021/nn4037514. Epub 2013 Aug 19.

Abstract

We report an innovative, large-area, and self-powered pressure mapping approach based on the triboelectric effect, which converts the mechanical stimuli into electrical output signals. The working mechanism of the triboelectric active sensor (TEAS) was theoretically studied by both analytical method and numerical calculation to gain an intuitive understanding of the relationship between the applied pressure and the responsive signals. Relying on the unique pressure response characteristics of the open-circuit voltage and short-circuit current, we realize both static and dynamic pressure sensing on a single device for the first time. A series of comprehensive investigations were carried out to characterize the performance of the TEAS, and high sensitivity (0.31 kPa(-1)), ultrafast response time (<5 ms), long-term stability (30,000 cycles), as well as low detection limit (2.1 Pa) were achieved. The pressure measurement range of the TEAS was adjustable, which means both gentle pressure detection and large-scale pressure sensing were enabled. Through integrating multiple TEAS units into a sensor array, the as-fabricated TEAS matrix was capable of monitoring and mapping the local pressure distribution applied on the device with distinguishable spatial profiles. This work presents a technique for tactile imaging and progress toward practical applications of nanogenerators, providing potential solutions for accomplishment of artificial skin, human-electronic interfacing, and self-powered systems.

摘要

我们报告了一种基于摩擦起电效应的创新型、大面积、自供电压力映射方法,该方法可将机械刺激转化为电输出信号。通过理论分析和数值计算对摩擦电主动传感器(TEAS)的工作机制进行了研究,从而直观地了解了施加的压力与响应信号之间的关系。利用开路电压和短路电流的独特压力响应特性,我们首次在单个器件上实现了静态和动态压力传感。对 TEAS 的性能进行了一系列全面的研究,实现了高灵敏度(0.31 kPa-1)、超快响应时间(<5 ms)、长期稳定性(30,000 次循环)和低检测限(2.1 Pa)。TEAS 的压力测量范围是可调的,这意味着既能实现轻柔压力检测,也能实现大规模压力传感。通过将多个 TEAS 单元集成到传感器阵列中,所制备的 TEAS 矩阵能够监测和映射施加在器件上的局部压力分布,并具有可区分的空间轮廓。这项工作展示了一种用于触觉成像的技术,并朝着纳米发电机的实际应用迈进了一步,为实现人造皮肤、人机接口和自供电系统提供了潜在的解决方案。

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