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首页> 外文期刊>Angewandte Chemie >Self-Healable Electrically Conducting Wires for Wearable Microelectronics
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Self-Healable Electrically Conducting Wires for Wearable Microelectronics

机译:穿戴式微电子产品的自愈导电线

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摘要

Electrically conducting wires play a critical role in the advancement of modem electronics and in particular are an important key to the development of next-generation wearable microelectronics. However, the thin conducting wires can easily break during use, and the whole device fails to function as a result. Herein, a new family of high-performance conducting wires that can self-heal after breaking has been developed by wrapping sheets of aligned carbon nanotubes around polymer fibers. The aligned carbon nanotubes offer an effective strategy for the self-healing of the electric conductivity, whereas the polymer fiber recovers its mechanical strength. A self-healable wire-shaped supercapacitor fabricated from a wire electrode of this type maintained a high capacitance after breaking and self-healing.
机译:导电线在现代电子技术的发展中起着至关重要的作用,尤其是下一代可穿戴微电子技术发展的重要关键。但是,细导线在使用过程中很容易折断,结果整个装置无法工作。本文中,已经开发了通过在聚合物纤维周围包裹对齐的碳纳米管的片材而能够在断裂后自愈的高性能导线的新家族。对齐的碳纳米管为电导率的自我修复提供了有效的策略,而聚合物纤维恢复了其机械强度。由这种类型的线电极制成的可自修复的线形超级电容器在断裂和自修复之后保持高电容。

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