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基于银纳米线的透明电极的制备及冷焊,其光学透过率>90%,方阻<10 欧姆/方。

Preparation and cold welding of silver nanowire based transparent electrodes with optical transmittances >90% and sheet resistances <10 ohm/sq.

机构信息

Ningbo Institute of Material Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, PR China.

School of Information and Computer Science, Ningbo University, Ningbo 315211, PR China.

出版信息

J Colloid Interface Sci. 2018 Feb 15;512:208-218. doi: 10.1016/j.jcis.2017.10.051. Epub 2017 Oct 16.

Abstract

In this article, silver nanowires (AgNWs) with aspect ratios of 1000 and lengths up to 200 μm are obtained by a modified polyol approach. These very long AgNWs are then utilized to prepare transparent electrodes (TEs) displaying a transmittance of 91.3% at a sheet resistance of 8.6 ohm/sq without any post-treatment. Furthermore, we also demonstrate a process for the cold welding of Ag NWs by simply dipping the AgNWs films into CTAB solutions, resulting in a further improvement for the optoelectronic performance. After the post-treatment, the AgNW-based TEs can achieve a transmittance of 93% at a sheet resistance of 9.5 ohm/sq. In addition, the electric behaviors of AgNW-based TEs are investigated. In the bulk-like regime, for the as-prepared AgNW-based TEs, the Figure of merit (FOM), DC to optical conductivity ratio reaches up to 566.8. After the cold welding process, the DC to optical conductivity ratio can reach even higher values (631.6). In the percolative regime, the as-prepared and welded AgNW-based TEs can achieve Π (FOM with percolative-like behavior) values of 166.8 and 242.1, respectively.

摘要

本文采用改进的多元醇法制备出长径比达 1000、长度达 200μm 的银纳米线(AgNWs)。这些非常长的 AgNWs 随后被用于制备透明电极(TEs),在未经任何后处理的情况下,其透光率为 91.3%,方阻为 8.6 欧姆/平方。此外,我们还通过简单地将 AgNWs 薄膜浸入 CTAB 溶液中,展示了 AgNWs 的冷焊工艺,从而进一步提高了光电性能。后处理后,基于 AgNW 的 TEs 的透光率可以在方阻为 9.5 欧姆/平方的情况下达到 93%。此外,我们还研究了基于 AgNW 的 TEs 的电性能。在块状区域,对于所制备的基于 AgNW 的 TEs,优值(FOM),即直流到光学电导率比高达 566.8。经过冷焊处理后,直流到光学电导率比甚至可以达到更高的值(631.6)。在渗流区域,所制备的和焊接的基于 AgNW 的 TEs 可以分别达到 166.8 和 242.1 的 Π(具有渗流行为的 FOM)值。

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