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受自然启发的超灵敏、高稳定性和柔性应变传感器。

Ultrasensitive, Highly Stable, and Flexible Strain Sensor Inspired by Nature.

作者信息

Wang Jingxiang, Liu Linpeng, Yang Chen, Zhang Changchao, Li Bo, Meng Xiancun, Ma Guoliang, Wang Dakai, Zhang Junqiu, Niu Shichao, Zhao Jiale, Han Zhiwu, Yao Zhongwen, Ren Luquan

机构信息

College of Biological and Agricultural Engineering, Jilin University, Changchun 130025, China.

The State Key Laboratory of High Performance and Complex Manufacturing, College of Mechanical and Electrical Engineering, Central South University, Changsha 410012, China.

出版信息

ACS Appl Mater Interfaces. 2022 Apr 13;14(14):16885-16893. doi: 10.1021/acsami.2c01127. Epub 2022 Mar 29.

Abstract

For advanced flexible strain sensors, it is not difficult to achieve high sensitivity only. However, integrating high sensitivity, high stability, and high durability into one sensor still remains a great challenge. Fortunately, natural creatures with diversified excellent performances have given us a lot of ready-made solutions. Here, scorpion and spiderweb are selected as coupling bionic prototypes, which are famous for their ultrasensitive sensing capacity and excellent structural durability, respectively. Based on that, a bioinspired strain sensor is successfully fabricated. The results demonstrate that the bioinspired strain sensor has a sensitivity of 940.5 in the strain range of 0-1.5% and a sensitivity of 2742.3 between 1.5 and 2.5%. Meantime, this sensor with a spiderweb-like reticular structure has a great improvement in stability and durability. Specifically, the sensor exhibits excellent stability during bending and stretching cycles over 80,000 times. Moreover, the response time and recovery time of the sensor are 169 and 195 ms, respectively. Besides, the sensor also has functions such as vibrating frequency identification due to its low hysteresis. Based on the excellent performance, the sensor can be applied to monitor human body motions serving as wearable electronics.

摘要

对于先进的柔性应变传感器而言,仅实现高灵敏度并非难事。然而,将高灵敏度、高稳定性和高耐久性集成于一个传感器中仍然是一项巨大的挑战。幸运的是,具有多样优异性能的天然生物为我们提供了许多现成的解决方案。在此,选择蝎子和蜘蛛网作为耦合仿生原型,它们分别以其超灵敏的传感能力和出色的结构耐久性而闻名。基于此,成功制造出一种受生物启发的应变传感器。结果表明,该受生物启发的应变传感器在0 - 1.5%应变范围内灵敏度为940.5,在1.5%至2.5%之间灵敏度为2742.3。同时,这种具有类似蜘蛛网网状结构的传感器在稳定性和耐久性方面有很大提升。具体而言,该传感器在超过80,000次的弯曲和拉伸循环中表现出优异的稳定性。此外,该传感器的响应时间和恢复时间分别为169毫秒和195毫秒。此外,由于其低滞后性,该传感器还具有振动频率识别等功能。基于其优异性能,该传感器可作为可穿戴电子产品用于监测人体运动。

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