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Light‐Powered Healing of a Wearable Electrical Conductor

导线 可穿戴计算机 导电体 可穿戴技术 材料科学 限制 数码产品 自愈 计算机科学 机械工程 电气工程 嵌入式系统 工程类 复合材料 医学 替代医学 病理
作者
Hong Suk Kang,Hee‐Tak Kim,Jung‐Ki Park,Seungwoo Lee
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:24 (46): 7273-7283 被引量:82
标识
DOI:10.1002/adfm.201401666
摘要

Mechanical failure along a conductive pathway can cause unexpected shutdown of an electronic devices, ultimately limiting the device lifetime. To address this problem, various systems to realize healable electrical conductors have been proposed; however, rapid, noninvasive, and on‐demand healing, factors that are all synergistically required, especially for wearable device applications, still remains challenging. Here, a light‐powered healable electrical conductor (conceptualized as photofluidic diffusional system) is proposed for simple‐, fast‐, and easy‐to‐implement wearable devices (e.g., the electronic skin, sensitive to mechanical motion). Contrary to other implementations such as capsules, heat, water, and mechanical forces, green light even with low intensity has potential to provide fast (less than 3 min) and repetitive recovery of a damaged electrical conductor without any direct invasion. Also, the multiple, irregular cracks resulting from vigorous motions of wearable devices can be simultaneously recovered regardless of the light incident angles and crack propagation directions, thus, making light‐powered healing more accessible to wearable devices beyond existing system options. To develop and demonstrate the key concepts of this system, combined studies on materials, integrations, and light‐powering strategy for recovering a damaged wearable electrical conductor are systematically carried out in the present work.
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