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具有全封闭金属网格的高性能透明导电薄膜。

High-Performance Transparent and Conductive Films with Fully Enclosed Metal Mesh.

作者信息

Nie Bangbang, Wang Chunhui, Li Xiangming, Tian Hongmiao, Chen Xiaoliang, Liu Guifang, Qiu Yangfan, Shao Jinyou

机构信息

Micro- and Nano-technology Research Center, State Key Laboratory for Manufacturing Systems Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, China.

出版信息

ACS Appl Mater Interfaces. 2021 Sep 1;13(34):40806-40816. doi: 10.1021/acsami.1c09467. Epub 2021 Aug 18.

Abstract

Metal mesh films as a kind of transparent conductive electrodes (TCEs) have shown high promise in various optoelectronic devices but are still challenged by a combination of high conductivity and transparency, mechanical robustness, and uniform electric field. Herein, we demonstrate a new concept of transparent and conductive films with a fully enclosed metal mesh, which is embedded in deep microcavities and is coated with a conductive polymer layer to combine these metrics. To ensure high conductivity and transparency, metal ink is filled into the fine (down to submicrometers) and deep mesh microcavities by electrowetting-assisted blading with low square resistances of 0.4 and 2.69 Ω sq at typical transmittances of 76.9 and 87.4%, respectively. The covered thin conductive polymer layer improves the electric field uniformity of metal mesh films by at least three orders of magnitude. The fully enclosed metal mesh films exhibit excellent mechanical flexibility, indicated by the fact that the resistance is almost unchanged after 10,000 bending cycles at a bending radius of ∼5 mm. Based on the fully enclosed metal mesh films, the emission intensity of alternating current electroluminescent devices is improved by more than three times compared with that in the case of solely using common metal mesh films.

摘要

金属网膜作为一种透明导电电极(TCEs),在各种光电器件中显示出了很高的应用前景,但仍面临着高导电性与透明度、机械强度以及均匀电场相结合的挑战。在此,我们展示了一种具有全封闭金属网的透明导电膜的新概念,该金属网嵌入深微腔中,并涂覆有导电聚合物层以综合这些指标。为确保高导电性和透明度,通过电润湿辅助刮涂将金属油墨填充到精细(低至亚微米级)且深的网孔微腔中,在典型透过率分别为76.9%和87.4%时,方阻分别低至0.4和2.69Ω/sq。覆盖的薄导电聚合物层将金属网膜的电场均匀性提高了至少三个数量级。全封闭金属网膜表现出优异的机械柔韧性,在弯曲半径约为5mm的情况下经过10000次弯曲循环后电阻几乎不变这一事实就表明了这一点。基于全封闭金属网膜,与仅使用普通金属网膜的情况相比,交流电致发光器件的发光强度提高了三倍以上。

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