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首页> 外文期刊>Angewandte Chemie >Multiple Hydrogen Bonding Enables the Self-Healing of Sensors for Human-Machine Interactions
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Multiple Hydrogen Bonding Enables the Self-Healing of Sensors for Human-Machine Interactions

机译:多种氢键能够为人机相互作用的传感器自我愈合

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摘要

Despite its widespread use in signal collection, flexible sensors have been rarely used in human-machine interactions owing to its indistinguishable signal, poor reliability, and poor stability when inflicted with unavoidable scratches and/or mechanical cuts. A highly sensitive and self-healing sensor enabled by multiple hydrogen bonding network and nanostructured conductive network is demonstrated. The nanostructured supramolecular sensor displays extremely fast (ca. 15 s) and repeatable self-healing ability with high healing efficiency (93% after the third healing process). It can precisely detect tiny human motions, demonstrating highly distinguishable and reliable signals even after cutting-healing and bending over 20000 cycles. Furthermore, a human-machine interaction system is integrated to develop a facial expression control system and an electronic larynx, aiming to control the robot to assist the patient's daily life and help the mute to realize real-time speaking.
机译:尽管在信号收集中广泛使用,但由于其无法区分的信号,可靠的信号,可靠性差和稳定性较差,而且在造成不可避免的划痕和/或机械切割时,柔性传感器很少使用。 通过多个氢键网络和纳米结构导电网络实现的高度敏感和自愈传感器。 纳米结构超分子传感器极快地显示出极快(CA.15秒)和可重复的自我愈合能力,具有高愈合效率(第三次愈合过程后93%)。 它可以精确地检测到微小的人类运动,即使在切割愈合和弯曲超过20000周期之后,也能展示高度区别和可靠的信号。 此外,人机交互系统被整合以开发面部表情控制系统和电子喉部,旨在控制机器人以帮助患者的日常生活,帮助静音实现实时讲话。

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