Shin Dong-Youn, Park Eun-Hye, Kim Ka-Hyun
Department of Graphic Arts Engineering, Pukyong National University, 45, Yongso-ro, Nam-gu, Busan, 48513, Republic of Korea.
Department of Physics, Chungbuk National University, Chungdae-ro 1, Seowon-gu, Cheongju-si, Chungcheongbuk-do, 28644, Republic of Korea.
Sci Rep. 2019 Aug 2;9(1):11226. doi: 10.1038/s41598-019-47779-0.
Low-cost flexible transparent conductive films (TCFs) with direct writing of metal grids have been explored as a promising alternative to conventional indium-tin-oxide-based TCFs for future flexible electronics. However, flexible TCFs have raised technical concerns because of their disadvantages, such as low resolution, low productivity, poor optoelectrical performance, poor thermal stability, and adverse moiré fringes, which primarily arise from the superposition of periodic patterns. Herein, a facile and highly productive method to fabricate moiré-fringeless TCFs with good optoelectrical characteristics and excellent thermal stability is presented using a single-pass printed random serpentine network of medium-field electrospun silver microfibres (AgMFs) with a line width of 2.32 ± 0.97 μm by exploiting the random serpentine motion of medium-field electrospinning, enabling moiré-fringeless TCFs. The electrical in-plane anisotropy of the TCFs can be kept well below 110.44 ± 1.26% with the in situ junction formation of the AgMFs in the transverse direction. Combined thermal and chemical annealing of the AgMFs enables high productivity by reducing the thermal annealing time by 40%. The good optoelectrical performance, fair electrical in-plane anisotropy, high productivity, and superior thermal stability of the TCFs with the single-pass printed random serpentine network of medium-field electrospun AgMFs are suitable properties for flexible electronics such as ultra-large digital signage with LEDs.
具有直接写入金属网格的低成本柔性透明导电薄膜(TCFs)已被探索作为传统氧化铟锡基TCFs的一种有前景的替代品,用于未来的柔性电子器件。然而,柔性TCFs因其缺点引发了技术问题,比如分辨率低、生产率低、光电性能差、热稳定性差以及不利的莫尔条纹,这些主要源于周期性图案的叠加。在此,通过利用中电场静电纺丝的随机蛇形运动,提出了一种简便且高产的方法来制造具有良好光电特性和出色热稳定性的无莫尔条纹TCFs,该方法采用线宽为2.32±0.97μm的中电场静电纺银微纤维(AgMFs)的单程印刷随机蛇形网络,从而实现无莫尔条纹的TCFs。通过AgMFs在横向原位形成结,TCFs的面内电各向异性可保持在远低于110.44±1.26%的水平。对AgMFs进行热退火和化学退火相结合,通过将热退火时间减少40%实现了高生产率。具有中电场静电纺AgMFs单程印刷随机蛇形网络的TCFs良好的光电性能、适度的面内电各向异性、高生产率和优异的热稳定性,是诸如带发光二极管的超大数字标牌等柔性电子器件的合适特性。