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Printed silk-fibroin-based triboelectric nanogenerators for multi-functional wearable sensing

机译:基于丝纤维蛋白的摩擦纳米电器,用于多功能可穿戴感测

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摘要

The rapid development of wearable sensing technology exhibits unprecedented opportunities for artificial intelligence by establishing an interactive interface between the physical and the virtual worlds. Energy preservation and multi-functional integration are central for the enhancement of perception and sustainability of wearable electronics. Herein, to address the above two critical challenges, we presented a printed silk-fibroin-based triboelectric nanogenerator (PS-TENG), which can efficiently scavenge the bio-mechanical energy and precisely detect components of environmental humidity and human body motions simultaneously. An industrial mass-fabrication technology, i.e. screen-printing process, was successfully optimized to manufacture graphite-based microscale surface patterns atop polymeric soft substrate to form interdigital electrodes, which was covered by a thin layer of silk fibroin to realize the PS-TENG. The proposed wearable PS-TENG exhibited a remarkable output performance, and the voltage, the current and the power density achieved up to 666 V, 174.6 mu A, 412 mu W/cm(2), respectively. Furthermore, this ultra-thin foldable PS-TENG possesses incredible features for multi-functional wearable sensing. With the help of the unique selective absorption property of silk fibroin, it was firstly reported that the existing states of water molecules (i.e., liquid and gaseous) in the air were successfully distinguished. Moreover, as attractive potential applications, it was demonstrated to accurately discriminate the health situation of human body (i.e., respiratory monitoring and joints motion recognizing) based on the capacitive and the triboelectric principles respectively, which is a novel combination of passive sensing and active sensing mechanisms within a single wearable device.
机译:通过在物理和虚拟世界之间建立互动界面,可穿戴传感技术的快速发展展示了人工智能的前所未有的机会。能量保存和多功能集成是增强可穿戴电子产品的感知和可持续性的核心。在此,为了解决上述两个关键挑战,我们介绍了一种印刷的丝纤维蛋白的摩擦纳米料(PS-Teng),可以有效地清除生物机械能,并同时精确地检测环境湿度和人体运动的组件。成功优化了工业质量制造技术,即丝网印刷方法,以制造基于石墨的微观表面图案,以形成聚合物软基板以形成叉指电极,其被薄丝素蛋白覆盖,以实现PS-Teng。所提出的可穿戴PS-teng分别表现出显着的输出性能,电压,电流和功率密度分别达到666V,174.6μA,412μW/ cm(2)。此外,这种超薄可折叠PS-Teng拥有多功能可穿戴感测的令人难以置信的功能。借助于丝素蛋白的独特选择性吸收性能,首先报道了空气中存在的水分子(即液态和气态)的现有状态。此外,作为有吸引力的潜在应用,证明了基于电容和摩擦电原理,准确地区分人体(即呼吸监测和关节运动识别)的健康状况,这是一种新颖的被动感测和活性感测的新组合单个可穿戴设备内的机制。

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