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A potentiometric mechanotransduction mechanism for novel electronic skins

机译:新型电子皮肤的电位机械机理

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Human skin perceives external mechanical stimuli by sensing the variation in the membrane potential of skin sensory cells. Many scientists have attempted to recreate skin functions and develop electronic skins (e-skins) based on active and passive sensing mechanisms. Inspired by the skin sensory behavior, we investigated materials and electronic devices that allow us to encode mechanical stimuli into potential differences measured between two electrodes, resulting in a potentiometric mechanotransduction mechanism. We present here a potentiometric mechanotransducer that is fabricated through an all-solution processing approach. This mechanotransducer shows ultralow-power consumption, highly tunable sensing behavior, and capability to detect both static and low-frequency dynamic mechanical stimuli. Furthermore, we developed two novel classes of sensing devices, including strain-insensitive sensors and single-electrode-mode e-skins, which are challenging to achieve using the existing methods. This mechanotransduction mechanism has broad impact on robotics, prosthetics, and health care by providing a much improved human-machine interface.
机译:人体皮肤通过感测皮肤感觉细胞的膜电位的变化来感知外部机械刺激。许多科学家们已经尝试重新创建皮肤功能并根据主动和被动感测机制开发电子皮肤(E-Skins)。灵感来自皮肤感官行为,我们调查了允许我们将机械刺激的材料和电子设备进行编码成两个电极之间测量的潜在差异,从而产生电位机电机组机构。我们在此提供一种通过全解决方案处理方法制造的电位机械调节器。该机械调整器显示超级功耗,高度可调谐的感应行为,以及检测静态和低频动态机械刺激的能力。此外,我们开发了两种新颖的传感装置,包括应变不敏感的传感器和单电极模式E-Skins,这是使用现有方法实现的具有挑战性。该机械组织机构通过提供更加改进的人机界面对机器人,假肢和医疗保健产生了广泛的影响。

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