纳米纤维
材料科学
可伸缩电子设备
复合材料
导电体
延伸率
电导率
柔性电子器件
导线
数码产品
电极
纳米技术
电气工程
工程类
物理化学
极限抗拉强度
化学
作者
Jinwei Cao,Liang Fei,Hua Yang Li,Xin Li,You Fan,Yiming Yin,Fali Li,Xu Jin,Hanfang Feng,Dan Xu,Huali Yang,Yiwei Liu,Run‐Wei Li,Guang Zhu
出处
期刊:Research Square - Research Square
日期:2021-04-15
标识
DOI:10.21203/rs.3.rs-386313/v1
摘要
Abstract The development of stretchable electronics will thrive on the novel interface structure to solve the stretchability-conductivity dilemma, which is still a great challenge. Herein, we report a nano-liquid metal (LM)-based high-robust stretchable electrode (NHSE) with a self-adaptable interface that mimics water-to-net interaction. Based on in situ assembly of electrospun elastic nanofibers scaffold and electrosprayed LM nanoparticles, the NHSE exhibits an extremely low sheet resistance of 52 mΩ/□. It is not only insensitive to a large degree of mechanical stretching ( i.e. , 350% electrical resistance change upon 570% elongation), but also immune to cyclic deformation ( i.e. , 5% electrical resistance increase after 100,000 stretching cycles with 100% elongation). These key properties are far more superior to the state-of-the-art reports. Its robustness and stability are verified under diverse circumstances, including long-term exposure in air (420 days), cyclic washing (30,000 times), and resilience against mechanical damages. The combination of conductivity, stretchability and durability makes the NHSE a promising conductor/electrode solution to flexible/stretchable electronics for applications such as wearable on-body physiological signal detection.
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