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Self-powered wearable sensing-textiles for real-time detecting environmental atmosphere and body motion based on surface-triboelectric coupling effect

机译:基于表面摩擦耦合效应的自动穿戴传感纺织品,用于实时检测环境气氛和车身运动

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摘要

Self-powered wearable sensing-textiles for real-time detecting environmental atmosphere and body motion have been presented. The textile is based on highly-stretchable conductive ecoflex fiber modified with multiwall carbon nanotube and polyaniline (PANI) derivatives (acting as one electrode). The surface of the fiber is twined with varnished wire (acting as the other electrode). Upon applied deformation of stretching or bending, the sensing-textile can harvest the mechanical energy and output electric signals through the triboelectrification effect between PANI and varnished wire. After being attached on the human body, the triboelectric output of the sensing-textile can be used to monitor body motion, including finger bending and body stretching. Interestingly, the triboelectric output of the sensing-textile is significantly dependent on the atmosphere, which can actively distinguish different gas species in the environment. The sensitivity, stability and selectivity against ethanol, ammonia, acetone and formaldehyde are high. The response against 400 ppm ethanol vapor at room temperature is up to 54.73%. The current density is 2.1 x 10(-4) A m(-2), and the power density is 4.2 x 10(-5) W m(-2). During both the motion detecting and gas sensing processes, no external electricity power is needed. The triboelectric signal can be treated as not only the sensing signal but also the power source for driving the device. The working mechanism is based on surface-triboelectric coupling effect. The present results can promote the development of self-powered wearable electronics.
机译:用于实时检测环境气氛和身体运动自供电可穿戴感测纺织品已经呈现。纺织基于与多壁碳纳米管和聚苯胺(PANI)衍生物(作为一个电极)改性高伸缩性导电ECOFLEX纤维。纤维的表面被缠绕以漆包线(作为另一个电极)。在拉伸或弯曲的施加的变形,感测纺织品可通过PANI和漆包线之间的摩擦起电效应收获机械能和输出电信号。附着在人体后,感测纺织的摩擦输出可以用于监视身体运动,包括手指的弯曲和伸展身体。有趣的是,感测纺织的摩擦输出是显著依赖于大气中,其可以积极地在环境中区分不同的气体种类。的灵敏度,稳定性和对乙醇,氨,丙酮和甲醛的选择性是高的。在室温下对400ppm的乙醇蒸气的响应是高达54.73%。电流密度为2.1×10(-4)A M(-2),功率密度为4.2×10(-5)W,米(-2)。两者期间的运动检测和气敏过程,不需要外部电力。摩擦电信号可被视为不仅感测信号,而且还用于驱动装置的动力源。工作机制是基于表面摩擦电耦合效应。目前的结果可以促进自供电的可穿戴式电子的发展。

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