Lawrence Livermore National Laboratory, 7000 East Avenue, Livermore, CA, 94550, USA.
Sandia National Laboratories, Livermore, CA, 94551, USA.
Adv Sci (Weinh). 2022 May;9(15):e2200629. doi: 10.1002/advs.202200629. Epub 2022 Mar 25.
Flexible electronic skin with features that include sensing, processing, and responding to stimuli have transformed human-robot interactions. However, more advanced capabilities, such as human-like self-protection modalities with a sense of pain, sign of injury, and healing, are more challenging. Herein, a novel, flexible, and robust diffusive memristor based on a copolymer of chlorotrifluoroethylene and vinylidene fluoride (FK-800) as an artificial nociceptor (pain sensor) is reported. Devices composed of Ag/FK-800/Pt have outstanding switching endurance >10 cycles, orders of magnitude higher than any other two-terminal polymer/organic memristors in literature (typically 10 -10 cycles). In situ conductive atomic force microscopy is employed to dynamically switch individual filaments, which demonstrates that conductive filaments correlate with polymer grain boundaries and FK-800 has superior morphological stability under repeated switching cycles. It is hypothesized that the high thermal stability and high elasticity of FK-800 contribute to the stability under local Joule heating associated with electrical switching. To mimic biological nociceptors, four signature nociceptive characteristics are demonstrated: threshold triggering, no adaptation, relaxation, and sensitization. Lastly, by integrating a triboelectric generator (artificial mechanoreceptor), memristor (artificial nociceptor), and light emitting diode (artificial bruise), the first bioinspired injury response system capable of sensing pain, showing signs of injury, and healing, is demonstrated.
具有传感、处理和响应刺激功能的柔性电子皮肤改变了人机交互方式。然而,更先进的功能,如具有类似人类的自我保护模式的功能,包括疼痛感知、损伤迹象和愈合能力,更加具有挑战性。在此,报告了一种新型的、灵活的、稳健的基于氯三氟乙烯和偏氟乙烯共聚物 (FK-800) 的扩散型忆阻器作为人工伤害感受器 (疼痛传感器)。Ag/FK-800/Pt 器件具有出色的开关耐久性 (>10 个循环),比文献中任何其他两端聚合物/有机忆阻器的循环次数都高出几个数量级 (通常为 10-10 个循环)。原位导电原子力显微镜用于动态切换单个细丝,这表明导电细丝与聚合物晶界相关联,并且 FK-800 在重复开关循环下具有优越的形态稳定性。据推测,FK-800 的高热稳定性和高弹性有助于在与电开关相关的局部焦耳加热下保持稳定。为了模拟生物伤害感受器,展示了四个特征性的伤害感受器特性:阈值触发、无适应、弛豫和敏化。最后,通过集成一个摩擦电发电机 (人工机械感受器)、忆阻器 (人工伤害感受器) 和发光二极管 (人工瘀伤),展示了第一个能够感知疼痛、显示损伤迹象和愈合的仿生损伤反应系统。