摩擦电效应
材料科学
纤维
制作
可扩展性
芯(光纤)
数码产品
复合材料
纳米发生器
计算机科学
光电子学
纳米技术
电气工程
工程类
病理
压电
数据库
医学
替代医学
作者
Mengxiao Chen,Zhe Wang,Qichong Zhang,Zhixun Wang,Wei Liu,Ming Chen,Lei Wei
标识
DOI:10.1038/s41467-021-21729-9
摘要
The well-developed preform-to-fiber thermal drawing technique owns the benefit to maintain the cross-section architecture and obtain an individual micro-scale strand of fiber with the extended length up to thousand meters. In this work, we propose and demonstrate a two-step soluble-core fabrication method by combining such an inherently scalable manufacturing method with simple post-draw processing to explore the low viscosity polymer fibers and the potential of soft fiber electronics. As a result, an ultra-stretchable conductive fiber is achieved, which maintains excellent conductivity even under 1900% strain or 1.5 kg load/impact freefalling from 0.8-m height. Moreover, by combining with triboelectric nanogenerator technique, this fiber acts as a self-powered self-adapting multi-dimensional sensor attached on sports gears to monitor sports performance while bearing sudden impacts. Next, owing to its remarkable waterproof and easy packaging properties, this fiber detector can sense different ion movements in various solutions, revealing the promising applications for large-area undersea detection.
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