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A flexible bifunctional sensor based on porous copper nanowire@IonGel composite films for high-resolution stress/deformation detection

机译:基于多孔铜纳米线的柔性双功能传感器,用于高分辨率应力/变形检测离子复合薄膜

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摘要

Flexible wearable electronics, including monitors, supercapacitors, sensors and batteries, especially stress or strain sensors, have attracted extensive discussion and attention, due to their distinctive characteristics such as high sensitivity and ultra-flexibility, and their broad application prospects in artificial intelligence (AI), robot sensing interfaces, and also high precision medical instruments. However, a narrower deformation rate, higher latency, and even counterfeit sensitivity severely limit their sensing performance and popularity in practical applications. Herein, a new bifunctional sensor based on excellent conductive and biocompatible porous copper nanowire (CuNW)/IonGel (PCI) composite films introducing a polystyrene (PS) microsphere template is developed. The sensor exhibits unparalleled mechanical properties (the maximum extension rate is 8000%), as well as omnidirectional, arbitrary angle/dimension extension, distortion and bending. This piezo-resistive sensor also features a convincing ultra-high sensitivity (S, 72.1 kPa(-1)) and gauge factor (Gf, 28.5) with negligible hysteresis under repeated cycle tests. Furthermore, compared to the same type of sensor, the limit of detection (LOD) is drastically reduced (merely 0.14 Pa). Undoubtedly, it is promising for high-resolution strain/stress-sensing electronic skin (e-skin) and green super-stretched electrodes.
机译:柔性可穿戴电子设备,包括监视器,超级电路,传感器和电池,尤其是压力或应变传感器,由于它们具有高灵敏度和超灵活性等特点,因此引起了广泛的讨论和关注,以及他们在人工智能中的广泛应用前景(AI) ),机器人传感界面,以及高精度医疗器械。然而,更窄的变形率,更高的延迟,甚至假冒敏感性严重限制了他们在实际应用中的感知性能和普及。在此,开发了一种基于优异导电和生物相容性多孔铜纳米线(CUNW)/离子(PCI)复合膜的新的双功能传感器,其开发了引入聚苯乙烯(PS)微球模板。传感器具有无与伦比的机械性能(最大延伸速率为8000%),以及全向,任意角度/尺寸延伸,失真和弯曲。该压电传感器还具有令人信服的超高灵敏度(S,72.1kPa(-1))和规格因子(GF,28.5),在重复循环测试下具有可忽略的滞后。此外,与相同类型的传感器相比,检测极限(LOD)大幅减少(仅仅0.14Pa)。毫无疑问,它很有希望高分辨率应变/应力感测电子皮肤(E-SKIN)和绿色超拉伸电极。

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  • 作者单位

    Univ Sci &

    Technol China Sch Nanotech &

    Nanobion 96 Jinzhai Rd Hefei 230026 Peoples R China;

    Univ Sci &

    Technol China Sch Nanotech &

    Nanobion 96 Jinzhai Rd Hefei 230026 Peoples R China;

    Univ Sci &

    Technol China Sch Nanotech &

    Nanobion 96 Jinzhai Rd Hefei 230026 Peoples R China;

    Univ Sci &

    Technol China Sch Nanotech &

    Nanobion 96 Jinzhai Rd Hefei 230026 Peoples R China;

    Chinese Acad Sci Suzhou Inst Nanotech &

    Nanobion Div Interdisciplinary &

    Comprehens Res &

    Platform 398 Ruoshui Rd Ind Pk Suzhou 215123 Peoples R China;

    Univ Sci &

    Technol China Sch Nanotech &

    Nanobion 96 Jinzhai Rd Hefei 230026 Peoples R China;

    Chinese Acad Sci Suzhou Inst Nanotech &

    Nanobion Div Interdisciplinary &

    Comprehens Res &

    Platform 398 Ruoshui Rd Ind Pk Suzhou 215123 Peoples R China;

    Chinese Acad Sci Suzhou Inst Nanotech &

    Nanobion Div Interdisciplinary &

    Comprehens Res &

    Platform 398 Ruoshui Rd Ind Pk Suzhou 215123 Peoples R China;

    Univ Sci &

    Technol China Sch Nanotech &

    Nanobion 96 Jinzhai Rd Hefei 230026 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

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