An electrically and mechanically self-healing composite with pressure- and flexion-sensitive properties for electronic skin applications

电子皮肤 材料科学 自愈 压阻效应 软机器人 复合数 仿生学 纳米技术 智能材料 生物医学工程 导电体 复合材料 电阻和电导 石墨烯 计算机科学 执行机构 人工智能 病理 替代医学 医学
作者
Benjamin C. K. Tee,Chao Wang,Ranulfo Allen,Zhenan Bao
出处
期刊:Nature Nanotechnology [Springer Nature]
卷期号:7 (12): 825-832 被引量:1322
标识
DOI:10.1038/nnano.2012.192
摘要

Pressure sensitivity and mechanical self-healing are two vital functions of the human skin. A flexible and electrically conducting material that can sense mechanical forces and yet be able to self-heal repeatably can be of use in emerging fields such as soft robotics and biomimetic prostheses, but combining all these properties together remains a challenging task. Here, we describe a composite material composed of a supramolecular organic polymer with embedded nickel nanostructured microparticles, which shows mechanical and electrical self-healing properties at ambient conditions. We also show that our material is pressure- and flexion-sensitive, and therefore suitable for electronic skin applications. The electrical conductivity can be tuned by varying the amount of nickel particles and can reach values as high as 40 S cm−1. On rupture, the initial conductivity is repeatably restored with ∼90% efficiency after 15 s healing time, and the mechanical properties are completely restored after ∼10 min. The composite resistance varies inversely with applied flexion and tactile forces. These results demonstrate that natural skin's repeatable self-healing capability can be mimicked in conductive and piezoresistive materials, thus potentially expanding the scope of applications of current electronic skin systems. A supramolecular polymer with embedded nanostructured Ni particles shows mechanical and electrical self-healing capabilities as well as piezoresistive properties, making it a good candidate for electronic skin applications.
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