制作
材料科学
多边形网格
微尺度化学
电阻式触摸屏
电极
纳米技术
光电子学
3D打印
计算机科学
复合材料
化学
医学
计算机图形学(图像)
替代医学
数学教育
数学
物理化学
病理
计算机视觉
作者
Zhenghao Li,Hongke Li,Xiaoyang Zhu,Zilong Peng,Guangming Zhang,Jianjun Yang,Fei Wang,Yuan‐Fang Zhang,Luanfa Sun,Rui Wang,Jinbao Zhang,Zhongming Yang,Hao Yi,Hongbo Lan
出处
期刊:Advanced Science
[Wiley]
日期:2022-03-01
卷期号:9 (14): e2105331-e2105331
被引量:180
标识
DOI:10.1002/advs.202105331
摘要
Abstract Flexible transparent electrodes (FTEs) with embedded metal meshes play an indispensable role in many optoelectronic devices due to their excellent mechanical stability and environmental adaptability. However, low‐cost, simple, efficient, and environmental friendly integrated manufacturing of high‐performance embedded metal meshes remains a huge challenge. Here, a facile and novel fabrication method is proposed for FTEs with an embedded metal mesh via liquid substrateelectric‐field‐driven microscale 3D printing process. This direct printing strategy avoids tedious processes and offers low‐cost and high‐volume production, enabling the fabrication of high‐resolution, high‐aspect ratio embedded metal meshes without sacrificing transparency. The final manufactured FTEs with 80 mm × 80 mm embedded metal mesh offers excellent optoelectronic performance with a sheet resistance ( R s ) of 6 Ω sq −1 and a transmittance ( T ) of 85.79%. The embedded metal structure still has excellent mechanical stability and good environmental suitability under different harsh working conditions. The practical feasibility of the FTEs is successfully demonstrated with a thermally driven 4D printing structure and a resistive transparent strain sensor. This method can be used to manufacture large areas with facile, high‐efficiency, low‐cost, and high‐performance FTEs.
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