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通过FeCl₃稀溶液处理解决银纳米线透明导电薄膜的稳定性问题

Tackling the Stability Issues of Silver Nanowire Transparent Conductive Films through FeCl₃ Dilute Solution Treatment.

作者信息

Chu Xikun, Wang Ke, Tao Jingqi, Li Shuxin, Ji Shulin, Ye Changhui

机构信息

Key Laboratory of Materials Physics, Anhui Key Laboratory of Nanomaterials and Nanotechnology, Institute of Solid State Physics, Chinese Academy of Sciences, Hefei 230031, China.

Science Island Branch of Graduate School, University of Science and Technology of China, Hefei 230026, China.

出版信息

Nanomaterials (Basel). 2019 Apr 3;9(4):533. doi: 10.3390/nano9040533.

Abstract

Silver nanowires (AgNWs) have been investigated as alternatives to indium tin oxide in transparent conductive films (TCFs) for electronics. However, AgNW TCFs still pose stability issues when exposed to thermal, chemical, and mechanical stimuli. Herein, we demonstrate a facile and effective route to improve stability by treating the films with dilute ferric chloride solution. Our results indicate that after treatment the films exhibit a dramatically enhanced stability against aging, high temperature oxidation, chemical etching, sulfurization, and mechanical straining. Size-dependent instability is fully explored and explained regarding surface atomic diffusion, which could be blocked by enhancing the activation energy of surface diffusion through forming a AgCl cap under ferric chloride solution treatment. Chemisorption-related Fermi level shift of silver nanowires is applied to tune their chemical reactivity to ferric chloride solution for balancing between size-dependent stability improvement and maintaining optoelectrical properties. Owing to the dilute treatment solution, the treated films exhibit a negligible change in light transmittance, whereas sheet resistance decreases by 30% and flexibility increases because of capillary-force-induced welding of contacting AgNWs and AgCl layer mediated tightening. These findings are significant for real-world applications of AgNW TCFs.

摘要

银纳米线(AgNWs)已被研究作为电子器件透明导电薄膜(TCFs)中氧化铟锡的替代品。然而,当暴露于热、化学和机械刺激时,AgNW TCFs仍然存在稳定性问题。在此,我们展示了一种通过用稀氯化铁溶液处理薄膜来提高稳定性的简便有效方法。我们的结果表明,处理后的薄膜在抗老化、高温氧化、化学蚀刻、硫化和机械应变方面表现出显著增强的稳定性。关于表面原子扩散,我们充分探讨并解释了尺寸依赖性不稳定性,通过在氯化铁溶液处理下形成AgCl帽来提高表面扩散的活化能,可以阻止这种不稳定性。银纳米线与化学吸附相关的费米能级移动被用于调节它们对氯化铁溶液的化学反应性,以在尺寸依赖性稳定性提高和保持光电性能之间取得平衡。由于处理溶液稀释,处理后的薄膜的透光率变化可忽略不计,而由于接触的AgNWs的毛细管力诱导焊接和AgCl层介导的收紧,薄膜电阻降低了30%,柔韧性增加。这些发现对于AgNW TCFs的实际应用具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/baf3/6523130/b4aee839500c/nanomaterials-09-00533-g001.jpg

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