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Transparent Stretchable Self-Powered Patchable Sensor Platform with Ultrasensitive Recognition of Human Activities

机译:具有人类活动超灵敏识别功能的透明可拉伸自供电可修补传感器平台

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摘要

Monitoring of human activities can provide clinically relevant information pertaining to disease diagnostics, preventive medicine, care for patients with chronic diseases, rehabilitation, and prosthetics. The recognition of strains on human skin, induced by subtle movements of muscles in the internal organs, such as the esophagus and trachea, and the motion of joints, was demonstrated using a self-powered patchable strain sensor platform, composed on multifunctional nanocomposites of low-density silver nanowires with a conductive elastomer of poly(3,4-ethylenedioxythiophene):polystyrenesulfonate/polyurethane, with high sensitivity, stretchability, and optical transparency. The ultra-low-power consumption of the sensor, integrated with both a supercapacitor and a triboelectric nanogenerator into a single transparent stretchable platform based on the same nanocomposites, results in a self-powered monitoring system for skin strain. The capability of the sensor to recognize a wide range of strain on skin has the potential for use in new areas of invisible stretchable electronics for human monitoring. A new type of transparent, stretchable, and ultrasensitive strain sensor based on a AgNW/PEDOT:PSS/PU nanocomposite was developed. The concept of a self-powered patchable sensor system integrated with a supercapacitor and a triboelectric nanogenerator that can be used universally as an autonomous invisible sensor system was used to detect the wide range of strain on human skin.
机译:监视人类活动可以提供与疾病诊断,预防医学,慢性病患者护理,康复和假肢相关的临床相关信息。使用自供电的可修补应变传感器平台(由低能量的多功能纳米复合物组成),证明了识别内部皮肤上的应变是由内部器官(如食道和气管)的微妙运动以及关节运动引起的。具有高灵敏度,可拉伸性和光学透明性的聚(3,4-乙撑二氧噻吩):聚苯乙烯磺酸盐/聚氨酯的导电弹性体的高密度银纳米线。该传感器的超低功耗与超级电容器和摩擦电纳米发生器都集成到了基于相同纳米复合材料的单个透明可拉伸平台中,从而形成了用于皮肤应变的自供电监测系统。该传感器能够识别皮肤上的各种应变,因此有潜力用于人类监测的隐形可拉伸电子产品的新领域。开发了一种基于AgNW / PEDOT:PSS / PU纳米复合材料的新型透明,可拉伸和超灵敏应变传感器。具有超级电容器和摩擦纳米发电机的自供电可修补传感器系统的概念可普遍用作自主的不可见传感器系统,用于检测人体皮肤上的各种应变。

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