Room‐Temperature Nanosoldering of a Very Long Metal Nanowire Network by Conducting‐Polymer‐Assisted Joining for a Flexible Touch‐Panel Application

材料科学 纳米线 氧化铟锡 纳米技术 柔性电子器件 导电聚合物 聚合物基片 可伸缩电子设备 渗透(认知心理学) 基质(水族馆) 导电体 复合材料 聚合物 数码产品 薄膜 物理化学 神经科学 地质学 化学 海洋学 生物
作者
Jinhwan Lee,Phillip Lee,Habeom Lee,Sukjoon Hong,Inhwa Lee,Junyeob Yeo,Seung Seob Lee,Taek‐Soo Kim,Dongjin Lee,Seung Hwan Ko
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:23 (34): 4171-4176 被引量:487
标识
DOI:10.1002/adfm.201203802
摘要

Abstract As an alternative to the brittle and expensive indium tin oxide (ITO) transparent conductor, a very simple, room‐temperature nanosoldering method of Ag nanowire percolation network is developed with conducting polymer to demonstrate highly flexible and even stretchable transparent conductors. The drying conducting polymer on Ag nanowire percolation network is used as a nanosoldering material inducing strong capillary‐force‐assisted stiction of the nanowires to other nanowires or to the substrate to enhance the electrical conductivity, mechanical stability, and adhesion to the substrate of the nanowire percolation network without the conventional high‐temperature annealing step. Highly bendable Ag nanowire/conducting polymer hybrid films with low sheet resistance and high transmittance are demonstrated on a plastic substrate. The fabricated flexible transparent electrode maintains its conductivity over 20 000 cyclic bends and 5 to 10% stretching. Finally, a large area (A4‐size) transparent conductor and a flexible touch panel on a non‐flat surface are fabricated to demonstrate the possibility of cost‐effective mass production as well as the applicability to the unconventional arbitrary soft surfaces. These results suggest that this is an important step toward producing intelligent and multifunctional soft electric devices as friendly human/electronics interface, and it may ultimately contribute to the applications in wearable computers.
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