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一种具有金属化纳米纤维的高拉伸透明自供电摩擦电触觉传感器,用于可穿戴电子设备。

A Highly Stretchable Transparent Self-Powered Triboelectric Tactile Sensor with Metallized Nanofibers for Wearable Electronics.

机构信息

CAS Center for Excellence in Nanoscience, Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing, 100083, P. R. China.

School of Nanoscience and Technology, University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.

出版信息

Adv Mater. 2018 Mar;30(12):e1706738. doi: 10.1002/adma.201706738. Epub 2018 Feb 7.

Abstract

Recently, the quest for new highly stretchable transparent tactile sensors with large-scale integration and rapid response time continues to be a great impetus to research efforts to expand the promising applications in human-machine interactions, artificial electronic skins, and smart wearable equipment. Here, a self-powered, highly stretchable, and transparent triboelectric tactile sensor with patterned Ag-nanofiber electrodes for detecting and spatially mapping trajectory profiles is reported. The Ag-nanofiber electrodes demonstrate high transparency (>70%), low sheet resistance (1.68-11.1 Ω □ ), excellent stretchability, and stability (>100% strain). Based on the electrode patterning and device design, an 8 × 8 triboelectric sensor matrix is fabricated, which works well under high strain owing to the effect of the electrostatic induction. Using cross-locating technology, the device can execute more rapid tactile mapping, with a response time of 70 ms. In addition, the object being detected can be made from any commonly used materials or can even be human hands, indicating that this device has widespread potential in tactile sensing and touchpad technology applications.

摘要

最近,人们一直在努力研究具有大规模集成和快速响应时间的新型高拉伸透明触觉传感器,这为拓展其在人机交互、人工电子皮肤和智能可穿戴设备等领域的应用提供了巨大的动力。在这里,我们展示了一种自供电、高拉伸、透明的摩擦电触觉传感器,其采用图案化的 Ag 纳米纤维电极来检测和空间映射轨迹轮廓。Ag 纳米纤维电极具有高透明度(>70%)、低面电阻(1.68-11.1 Ω□)、出色的拉伸性和稳定性(>100%应变)。基于电极图案化和器件设计,我们制作了一个 8×8 的摩擦电传感器矩阵,由于静电感应的影响,该传感器在高应变下仍能正常工作。利用交叉定位技术,该器件可以实现更快速的触觉映射,响应时间为 70ms。此外,被检测的物体可以是任何常用材料,甚至可以是人手,这表明该器件在触觉传感和触摸板技术应用中有广泛的应用潜力。

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