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Eye motion triggered self-powered mechnosensational communication system using triboelectric nanogenerator

机译:利用摩擦电纳米发电机的眼动触发自供电机械感觉通信系统

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摘要

Mechnosensational human-machine interfaces (HMIs) can greatly extend communication channels between human and external devices in a natural way. The mechnosensational HMIs based on biopotential signals have been developing slowly owing to the low signal-to-noise ratio and poor stability. In eye motions, the corneal-retinal potential caused by hyperpolarization and depolarization is very weak. However, the mechanical micromotion of the skin around the corners of eyes has never been considered as a good trigger signal source. We report a novel triboelectric nanogenerator (TENG)–based micromotion sensor enabled by the coupling of triboelectricity and electrostatic induction. By using an indium tin oxide electrode and two opposite tribomaterials, the proposed flexible and transparent sensor is capable of effectively capturing eye blink motion with a super-high signal level (~750 mV) compared with the traditional electrooculogram approach (~1 mV). The sensor is fixed on a pair of glasses and applied in two real-time mechnosensational HMIs—the smart home control system and the wireless hands-free typing system with advantages of super-high sensitivity, stability, easy operation, and low cost. This TENG-based micromotion sensor is distinct and unique in its fundamental mechanism, which provides a novel design concept for intelligent sensor technique and shows great potential application in mechnosensational HMIs.
机译:机械感人机界面(HMI)可以自然地大大扩展人机与外部设备之间的通信通道。由于具有较低的信噪比和较差的稳定性,基于生物电势信号的机械感人机界面(HMI)发展缓慢。在眼球运动中,由超极化和去极化引起的角膜视网膜电位非常弱。但是,从来没有考虑过眼角周围皮肤的机械微动是好的触发信号源。我们报告了一种通过摩擦电和静电感应耦合实现的新型摩擦电纳米发电机(TENG)为基础的微动传感器。通过使用铟锡氧化物电极和两种相反的摩擦材料,与传统的眼电图方法(〜1 mV)相比,所提出的柔性透明传感器能够以超高信号电平(〜750 mV)有效捕获眨眼动作。该传感器固定在一副眼镜上,并应用于两个实时机械感应HMI(智能家居控制系统和无线免提打字系统),具有超高的灵敏度,稳定性,易于操作和低成本的优点。这种基于TENG的微动传感器在其基本机理上是独特的,它为智能传感器技术提供了新颖的设计理念,并在机械传感HMI中显示出巨大的应用潜力。

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