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Multifunctional conductive cellulose fabric with flexibility, superamphiphobicity and flame-retardancy for all-weather wearable smart electronic textiles and high-temperature warning device

机译:多功能导电纤维素织物,具有柔韧性,超人物和耐火性的全天候可穿戴智能电子纺织品和高温警告装置

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摘要

Flexible wearable electronic textiles are in great demand with the rapid development of intelligent electronic clothing systems. Nonetheless, developing the wearable textiles-based all-weather conductive fabrics with high conductivity and sensitive temperature response property remains a huge challenge. Herein, an all-weather high conductive fabric (ACF) and fire warning sensor (AFWS) have been successfully fabricated on the basis of the multifunctional superamphiphobic cellulose fabric with high conductivity and excellent flame-retardant property. It is worth noting that the as-prepared ACF and AFWS have different surface resistances, which are 1.1 Omega/sq and 1 k Omega/sq, respectively. In comparison with the previously reported conductive textiles, the resulted ACF shows superior electrical stability even under extreme conditions such as complex water phase, oil phase, flame and bending. Moreover, the LED array has been designed and exhibits good electrical properties by virtue of the high conductivity and favorable oil-water repellency of the ACF, demonstrating wide application prospects in large-scale preparation of wearable electronic textiles. In addition, the as-prepared AFWS exhibits sensible temperature-responsive electrical resistance change, which can quickly respond within 3 s. More importantly, the mechanism of rapid reconstruction of the conductive network on the functionalized fabric surface driven by phosphorus blowing agent at high temperature have been well proposed. The current work provides a new idea to develop advanced multifunctional all-weather wearable electronic device, which can effectively realize real-time monitoring of human health and early warning of abnormal high temperature in various harsh outdoor environments.
机译:灵活的可佩戴电子纺织品在智能电子服装系统的快速发展方面都有很大的需求。尽管如此,开发具有高导电性和敏感温度响应性的可穿戴纺织品的全天候导电织物仍然是一个巨大的挑战。这里,基于具有高导电性和优异阻燃性的多功能超人均纤维素织物成功地制造了全天候高导电织物(ACF)和火灾警告传感器(AFWS)。值得注意的是,当制备的ACF和AFW具有不同的表面电阻,分别为1.1ω/ SQ和1K OMEGA / SQ。与先前报道的导电纺织品相比,所得到的ACF即使在诸如复杂的水相,油相,火焰和弯曲的极端条件下,也显示出优异的电稳定性。此外,LED阵列凭借ACF的高导电率和良好的防水性排斥性,设计并表现出良好的电气性能,展示了可穿戴电子纺织品的大规模制备中的广泛应用前景。此外,AS制备的AFWS表现出明智的温度响应电阻变化,可以在3秒内快速响应。更重要的是,很好地提出了在高温下由磷发泡剂驱动的官能化织物表面上的导电网络的快速重建机制。目前的工作提供了一种新的想法,可以开发先进的多功能全天候可穿戴电子设备,可以有效地实现各种恶劣户外环境中的人力健康和早期预警的实时监测。

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