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Coaxial Printing of Silicone Elastomer Composite Fibers for Stretchable and Wearable Piezoresistive Sensors

机译:用于可拉伸和可携带的压阻式传感器的硅氧烷弹性体复合纤维的同轴印刷

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摘要

Despite the tremendous efforts dedicated to developing various wearable piezoresistive sensors with sufficient stretchability and high sensitivity, challenges remain pertaining to fabrication scalability, cost, and efficiency. In this study, a facile, scalable, and low-cost coaxial printing strategy is employed to fabricate stretchable and flexible fibers with a core–sheath structure for wearable strain sensors. The highly viscous silica-modified silicone elastomer solution is used to print the insulating sheath layer, and the silicone elastomer solutions containing multi-walled carbon nanotubes (CNTs) are used as the core inks to print the conductive inner layer. With the addition of silica powders as viscosifiers, silica-filled silicone ink (sheath ink) converts to printable ink. The dimensions of the printed coaxial fibers can be flexibly controlled via adjusting the extrusion pressure of the inks. In addition, the electro-mechanical responses of the fiber-shaped strain sensors are investigated. The printed stretchable and wearable fiber-like CNT-based strain sensor exhibits outstanding sensitivities with gauge factors (GFs) of 1.4 to 2.5 × 106, a large stretchability of 150%, and excellent waterproof performance. Furthermore, the sensor can detect a strain of 0.1% and showed stable responses for over 15,000 cycles (high durability). The printed fiber-shaped sensor demonstrated capabilities of detecting and differentiating human joint movements and monitoring balloon inflation. These results obtained demonstrate that the one-step printed fiber-like strain sensors have potential applications in wearable devices, soft robotics, and electronic skins.
机译:尽管竭诚为开发具有足够拉伸性和高灵敏度的各种可穿戴压阻传感器而努力,但挑战仍然与制造可扩展性,成本和效率有关。在该研究中,采用容易,可伸缩和低成本的同轴印刷策略来制造具有用于可穿戴应变传感器的芯鞘结构的可伸展和柔性纤维。高度粘性二氧化硅改性的硅氧烷弹性体溶液用于打印绝缘护套层,并且含有多壁碳纳米管(CNT)的硅氧烷弹性体溶液用作印刷导电内层的芯油墨。随着二氧化硅粉末作为吸粘剂,二氧化硅填充的硅氧烷油墨(鞘墨)转化为可打印油墨。通过调节油墨的挤压压力,可以灵活地控制印刷同轴纤维的尺寸。此外,研究了纤维形应变传感器的电力响应。印刷的可伸展和可穿戴纤维的CNT基应变传感器具有卓越的敏感性,具有1.4至2.5×106的仪表因子(GFS),其可拉伸性为150%,具有优异的防水性能。此外,传感器可以检测0.1%的应变,并显示出超过15,000个循环(高耐久性)的稳定响应。印刷光纤传感器展示了检测和区分人的关节运动和监测气球通胀的能力。所获得的这些结果表明,一步印刷的光纤等应变传感器具有可穿戴器件,软机器人和电子皮肤中的潜在应用。

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