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Bioinspired, Superhydrophobic, and Paper-Based Strain Sensors for Wearable and Underwater Applications

机译:用于可穿戴和水下应用的生物悬浮,超疏水和纸张的应变传感器

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摘要

There is currently a growing demand for flexible strain sensors with high performance and water repellency for various applications such as human motion monitoring, sweat or humidity detection, and certain underwater tests. Among these strain sensors, paper-based ones have attracted increasing attention because they coincide with the future development trend of environment-friendly electronic products. However, paper-based electronics are easy to fail when they encounter water and are thus unable to be applied to humid or underwater circumstances. Herein, based on a strategy of coupling bionics inspired by lotus leaf and scorpion, which exhibit superhydrophobic characteristics and ultrasensitive vibration-sensing capacity, respectively, a paper-based strain sensor with high sensitivity and water repellency is successfully fabricated. As a result, the strain sensor exhibits a gauge factor of 263.34, a high strain resolution (0.098%), a fast response time (78 ms), excellent stability over 12,000 cycles, and a water contact angle of 164 degrees. Owing to the bioinspired structures and function mechanisms, the paper-based strain sensor is suitable to not only serve as regular wearable electronics to monitor human motions in real-time but also to detect subtle underwater vibrations, demonstrating its great potential for numerous applications like wearable electronics, water environmental protection, and underwater robots.
机译:目前,人们越来越需要高性能、防水的柔性应变传感器,用于人体运动监测、汗液或湿度检测以及某些水下测试等各种应用。在这些应变传感器中,纸基应变传感器因其符合环保电子产品的未来发展趋势而受到越来越多的关注。然而,纸质电子产品在遇到水时很容易发生故障,因此无法应用于潮湿或水下环境。本文以荷叶和蝎子的超疏水特性和超灵敏振动传感能力为灵感,采用耦合仿生学的策略,成功地制备了一种高灵敏度和防水性的纸基应变传感器。因此,应变传感器的标准系数为263.34,应变分辨率高(0.098%),响应时间快(78 ms),在12000次循环中具有良好的稳定性,水接触角为164度。基于生物启发的结构和功能机制,纸质应变传感器不仅适合作为常规可穿戴电子设备实时监测人体运动,还适合检测细微的水下振动,显示出其在可穿戴电子、水环境保护和水下机器人等众多应用中的巨大潜力。

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