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Self-powered electronic skin based on the triboelectric generator

机译:基于摩擦发电机的自动电子皮肤

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摘要

Human skin is the largest organ, which covers the human body and provides us the mechanical stimuli to help us interact with the outer environment. Inspired from the properties of human skin, imitating of the complicated human sensation using stretchable electronic devices becomes one of the most exciting research fields due to its vast potential application fields like wearable electronics, healthcare monitoring and artificial intelligence. To mimic real human skin, the huge sensor network is required to attach the body, where it seems critical to guarantee the energy supply at the same time. Nowadays, the emerging triboelectric nanogenerator (TENG), which can transduce the mechanical energy into the electrical energy based on the contact electrification and electrostatic induction, provides an attractive solution for the energy problem to work as the self-powered sensor. The self-powered sensor can generate electrical signal by it self-responsing to the stimulation from the environment without further energy supply devices. With four fundamental working modes and three main detection modes, TENG could develop versatile configurations to realize the various kinds of sensation. The mechanical compliance and stretchability together with the electrical conductance can be fulfilled beneficial from the advancement of material and micro/nano fabrication technology. In this way, the TENG based self-powered electronic skins (e-skins) have been developed with rational design to accomplish multifunctions of sensing including the pressure, position, strain, sliding and so on. It is expected that the self-powered e-skin will continue its fast development and make more progress to make the e-skin come into human life in the near future.
机译:人体皮肤是最大的器官,涵盖人体,为我们提供机械刺激,以帮助我们与外部环境相互作用。从人类皮肤的性质启发,使用可拉伸电子设备模仿复杂的人类感觉成为最令人兴奋的研究领域,因为其庞大的潜在应用领域,如可穿戴电子产品,医疗保健监测和人工智能。为了模仿真正的人类皮肤,需要巨大的传感器网络来安装身体,在那里它似乎同时保证能量供应至关重要。如今,可以基于接触电气化和静电诱导将机械能转换为电能的新出现的摩擦纳米料,为能量问题提供了作为自给自足传感器的有吸引力的解决方案。自供电传感器可以通过自响应于环境的刺激而没有进一步的能量供应装置来产生电信号。腾腾的四种基本工作模式和三种主要检测模式,可以开发多功能配置,实现各种感觉。可以从材料和微/纳米制造技术的推进和微/纳米制造技术的推进中实现与电导率一起的机械顺应性和拉伸性。通过这种方式,基于Teng的自动电子皮肤(E-Skins)已经通过合理设计开发,以实现传感的多隙,包括压力,位置,应变,滑动等。预计自动电子皮肤将继续快速发展,并取得更多进展,使电子皮肤在不久的将来进入人类生活。

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