ACS Appl Mater Interfaces. 2020 Jan 8;12(1):1427-1435. doi: 10.1021/acsami.9b15546. Epub 2019 Dec 26.
Highly stretchable fiber-based strain sensor is essential to develop various applications in intelligent textiles, biomedical electronics, and integrated circuits. Although several fiber-based strain sensors have been reported, attaining the balance between excellent stretchability, high conductivity, and controllable sensitivity remains challenging. Herein, we present a facile approach for fabricating highly conductive, stretchable, and sensitive fiber strain sensors by synthesizing poly(vinyl alcohol)/Ag nanoparticle composite coating through aqueous in situ reduction on a stretchable fiber with a braided structure. The conductive coating with a flexible structure shows an ultrahigh conductivity of 120 903 S/cm. The unique braided structure and dense conductive Ag network enable the strain sensor to simultaneously exhibit 150% of strain sensing, controllable gauge factor from 1.85 to 8.14 within 65% strain, and a rapid response time of 75 ms. Meanwhile, long-term durability and low hysteresis are other initial features of the fiber-based strain sensor. Most importantly, the fiber-based strain sensor is capable of detecting human motions, including vocal cord vibration, finger movements, walking, and running, exhibiting significant potential in real-time monitoring and intelligent textiles.
高度可拉伸的纤维基应变传感器对于开发智能纺织品、生物医学电子学和集成电路中的各种应用至关重要。尽管已经报道了几种纤维基应变传感器,但在卓越的可拉伸性、高导电性和可控制灵敏度之间取得平衡仍然具有挑战性。在此,我们提出了一种通过在具有编织结构的可拉伸纤维上通过水相原位还原合成聚(乙烯醇)/Ag 纳米颗粒复合涂层来制备高导电性、可拉伸和灵敏纤维应变传感器的简便方法。具有柔性结构的导电涂层表现出超高电导率为 120903 S/cm。独特的编织结构和密集的导电 Ag 网络使应变传感器能够同时表现出 150%的应变传感能力,在 65%应变范围内的可控制计数值从 1.85 到 8.14,响应时间快至 75 ms。同时,纤维基应变传感器还具有长期耐用性和低滞后性等初始特性。最重要的是,纤维基应变传感器能够检测人体运动,包括声带振动、手指运动、行走和跑步,在实时监测和智能纺织品方面具有巨大的潜力。