材料科学
导电体
纳米技术
透明度(行为)
伪装
电极
柔性电子器件
薄板电阻
数码产品
纳米线
光学透明度
超细纤维
透明导电膜
光电子学
复合材料
图层(电子)
计算机科学
电气工程
工程类
物理化学
人工智能
化学
计算机安全
作者
Qiang Fan,Jinlei Miao,Xuhua Liu,Xingwei Zuo,Wenxiao Zhang,Mingwei Tian,Shifeng Zhu,Lijun Qu,Xueji Zhang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2022-01-12
卷期号:22 (2): 740-750
被引量:65
标识
DOI:10.1021/acs.nanolett.1c04185
摘要
Flexible transparent electrodes demand high transparency, low sheet resistance, as well as excellent mechanical flexibility simultaneously, however they still remain to be a great challenge due to"trade-off" effect. Herein, inspired by a hollow interconnected leaf vein, we developed robust transparent conductive mesh with biomimetic interwoven structure via hierarchically self-assembles silver nanowires interwoven metal carbide/nitride (MXene) sheets along directional microfibers. Strong interfacial interactions between plant fibers and conductive units facilitate hierarchically interwoven conductive mesh constructed orderly on flexible and lightweight veins while maintaining high transparency, effectively avoiding the trade-off effect between optoelectronic properties. The flexible transparent electrodes exhibit sheet resistance of 0.5 Ω sq–1 and transparency of 81.6%, with a remarkably high figure of merit of 3523. In addition, invisible camouflage sensors are further successfully developed as a proof of concept that could monitor human body motion signals in an imperceptible state. The flexible transparent conductive mesh holds great potential in high-performance wearable optoelectronics and camouflage electronics.
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