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Fully Fabric-Based Triboelectric Nanogenerators as Self-Powered Human–Machine Interactive Keyboards

机译:基于织物的摩擦纳米能器作为自动的人机交互式键盘

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Combination flexible and stretchable textiles with self-powered sensors bring a novel insight into wearable functional electronics and cyber security in the era of Internet of Things. This work presents a highly flexible and self-powered fully fabric-based triboelectric nanogenerator (F-TENG) with sandwiched structure for biomechanical energy harvesting and real-time biometric authentication. The prepared F-TENG can power a digital watch by low-frequency motion and respond to the pressure change by the fall of leaves. A self-powered wearable keyboard (SPWK) is also fabricated by integrating large-area F-TENG sensor arrays, which not only can trace and record electrophysiological signals, but also can identify individuals' typing characteristics by means of the Haar wavelet. Based on these merits, the SPWK has promising applications in the realm of wearable electronics, self-powered sensors, cyber security, and artificial intelligences.
机译:具有自动传感器的组合灵活和可伸缩的纺织品,在互联网互联网时代的可穿戴功能电子和网络安全中提出了一种新颖的洞察力。 这项工作介绍了一种高度灵活和自动的基于织物的摩擦纳米电磁群(F-Teng),夹层结构,用于生物力学能量收集和实时生物识别认证。 准备好的F-Teng可以通过低频运动为数字观看电源,并通过叶子的落叶响应压力变化。 通过集成大面积F-Tenc传感器阵列,还制造了一种自动穿衣键盘(SPWK),这不仅可以追踪和记录电生理信号,而且还可以通过HAAR小波识别个人的键入特征。 基于这些优点,SPWK在可穿戴电子设备,自给自足传感器,网络安全和人工智能领域具有前途的应用。

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