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使用基于生物聚合物的无形成形忆阻器的柔性人工伤害感受器。

Flexible artificial nociceptor using a biopolymer-based forming-free memristor.

机构信息

Solid State Physics & Material Research Laboratory, School of Physics and Electronic Engineering, Guangzhou University, Guangzhou, 510006, China.

出版信息

Nanoscale. 2019 Apr 4;11(14):6591-6601. doi: 10.1039/c8nr08721k.

Abstract

The development of electronic devices possessing the functionality of a nociceptor is a crucial step toward electronic receptors that can transfer the external stimuli to the internal nerve system. Of the various materials that have been used to realize artificial nociceptors, biopolymers have the advantages of being abundant, inexpensive, biocompatible, and flexible. In this study, nociceptor behaviors are demonstrated by the flexible Ag/carboxymethyl ι-carrageenan/ITO/PET forming-free memristors for the electronic receptors. The flexible carboxymethyl ι-carrageenan-based memristor showed threshold switching characteristics with a high ION/IOFF ratio of ∼104 and good switching endurance (>1.5 × 105 cycles). It also showed high bending endurance over 1000 cycles when measured in both the flat and the maximum bending conditions. More importantly, it differs from other common sensory receptors with its key features and functions, including threshold, relaxation, allodynia and hyperalgesia behaviors. Such nociceptive behaviors are attributed to the formation and spontaneous rupture of the Ag filament with diffusive dynamics. Finally, we built a pressure sensory alarm system by using our artificial nociceptor devices.

摘要

开发具有伤害感受器功能的电子设备是朝着能够将外部刺激传递到内部神经系统的电子受体迈出的关键一步。在已经用于实现人工伤害感受器的各种材料中,生物聚合物具有丰富、廉价、生物相容性和灵活性的优点。在这项研究中,通过形成自由的 Ag/羧甲基 ι-卡拉胶/ITO/PET 柔性忆阻器展示了电子受体的伤害感受器行为。基于柔性羧甲基 ι-卡拉胶的忆阻器表现出阈值开关特性,具有高的 ION/IOFF 比(约 104)和良好的开关耐久性(>1.5×105 次循环)。当在平面和最大弯曲条件下进行测量时,它还表现出超过 1000 次循环的高弯曲耐久性。更重要的是,它与其他常见的感觉受体具有不同的关键特征和功能,包括阈值、弛豫、痛觉过敏和痛觉过敏行为。这种伤害感受行为归因于 Ag 细丝的形成和扩散动力学的自发破裂。最后,我们通过使用我们的人工伤害感受器设备构建了一个压力感应报警系统。

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