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3D printable composite dough for stretchable, ultrasensitive and body-patchable strain sensors

机译:3 d打印复合为可伸缩的面团,超灵敏和body-patchable应变传感器

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摘要

The recent development of strain sensor devices which can actively monitor human body motion has attracted tremendous attention, for application in various wearable electronics and human-machine interfaces. In this study, as materials for strain sensor devices, we exploit the low-cost, carbon-based, 3-dimensional (3D) printable composite dough. The dough is prepared via a chemical method based on the formation of electrostatic assemblies between 1-dimensional, amine-functionalized, multi-walled carbon nanotubes and 2-dimensional graphene oxides. The resulting composite dough has an extremely high storage modulus, which allows a vertically-stackable, 3D printing process for fabricating strain sensor devices on various dense, porous and structured substrates. The device performance parameters, including gauge factor, hysteresis, linearity, and overshooting behavior are found to be adjustable by controlling the printing process parameters. The fabricated strain sensor devices demonstrate the ability to distinguish actual human body motions. A high gauge factor of over 70 as well as other excellent device performance parameters are achievable for the printed sensor devices, and even small strains, below 1%, are also detectable by the fabricated sensor devices.
机译:应变传感器设备的最新发展可以积极地监控人体运动吗吸引了极大的关注,应用程序在各种可穿戴电子产品和人机接口。应变传感器设备,我们利用低成本、碳基,三维(3 d)打印复合生面团。化学法的基础上形成的维之间的静电组装,amine-functionalized,多壁碳纳米管和二维石墨烯氧化物。产生的复合面团具有极高储能模量,允许vertically-stackable, 3 d印刷过程编造各种应变传感器设备密度、多孔和结构化的基质。设备性能参数,包括计因素,磁滞、线性和过度可调节的行为被发现控制印刷工艺参数。应变传感器设备演示制作的区分实际人体运动能力。高应变系数的超过70以及其他优秀的设备性能参数实现印刷传感器设备,即使是小株,低于1%,也可检测由传感器设备制作的。

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