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Bio-photocapacitive tactile sensors as a touch-to-audio braille reader and solar capacitor

机译:生物光电容触觉传感器作为触摸磁盲盲读者和太阳能电容器

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摘要

Human-machine interfaces in emerging smart-skin technologies tend to be focussed towards high-sensitivity tactile sensing primarily with visual/numerical feedback, and research on e-skin technologies for the visually impaired is sparse. Here we demonstrate a proof-of-concept six-pixel tactile sensor that converts touch stimuli based on braille codes into an auditory output, and which could potentially be miniaturized as an 'energy-autonomous on-skin e-braille reader' for the visually impaired. By applying the concepts of electric double layer capacitance and bio-photo capacitance, a self-powered sensor is constructed that generates electrical signals as large as 2 V by modulating a bio-electrochemical liquid bridge between electrodes of opposite wetting characteristics. The liquid bridge, composed of photosynthetic pigment-proteins with a redox electrolyte, both augments the sensory response and serves as a standalone solar-capacitor that can generate a photocurrent as high as 140 mu A cm(-2), and which displays a long discharge time of similar to 20 min with just similar to 3 min of photo charging.
机译:新出现的智能皮肤技术中的人机界面往往主要针对高灵敏度的触感,主要针对可视/数值反馈,并且对视障人士的电子皮肤技术研究稀疏。在这里,我们展示了概念证据六像素触觉传感器,其将基于盲文代码转换为听觉输出的触摸刺激,并且可能被小式化为视觉上的“能量自主蜂鸣器电子识别器”受损。通过应用电双层电容和生物照片电容的概念,构造自动传感器,通过调制相对润湿特性的电极之间的生物电化学液体桥来产生大至2V的电信号。由氧化还原电解质的光合色素蛋白组成的液体桥,两者都增加了感觉响应,并用作独立的太阳能电容器,可以产生高达140μm(-2)的光电流,并且显示长度放电时间与20分钟相似,类似于3分钟的照片充电。

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