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化学稳定的柔性透明电极:电沉积在嵌入式银纳米线上的金

Chemically-stable flexible transparent electrode: gold-electrodeposited on embedded silver nanowires.

作者信息

Gholami Mostafa, Tajabadi Fariba, Taghavinia Nima, Moshfegh Alireza

机构信息

Department of Physics, Sharif University of Technology, Tehran, 11155-9161, Iran.

Department of Nanotechnology and Advanced Materials, Materials and Energy Research Center, PO Box 31787-316, Karaj, Iran.

出版信息

Sci Rep. 2023 Oct 16;13(1):17511. doi: 10.1038/s41598-023-44674-7.

Abstract

Silver nanowires (AgNWs) with a low diameter, high aspect ratio, stable suspension, and easy synthesis have recently attracted the optoelectronic industry as a low-cost alternative to indium tin oxide transparent conductive films. However, silver nanowires are not chemically stable, and their conductivity diminishes over time due to reactions with atmospheric components. This is a bottleneck for their wide industrial applications. In this study, we aim to address this issue by synthesizing silver nanowires with an average diameter of approximately 65 nm and a length of approximately 13 µm. The prepared Ag nanowires are then applied to fabricate transparent, flexible, and chemically stable conductive films. The fabrication includes spraying of silver nanowires suspension on a glass substrate followed by Dr. blade coating of polystyrene (PS) solution and delamination of the PS-AgNWs film. The resulting film exhibits an optimum sheet resistance of 24 Ω/□ and transmittance of 84%. To further enhance the stability of the transparent conductive film, the facial and scalable double pulse electrodeposition method is used for coating of gold on the exposed surface of the AgNWs embedded in PS. The final transparent film with gold coating demonstrates a remarkable stability under harsh conditions including long exposure to UV light and nitric acid solution. After 100 min of UV/Ozone treatment, the increase in sheet resistance of the optimal PS-AgNW@Au sample is 15.6 times lower than the samples without gold coating. In addition, the change in sheet resistance after 2000 bending cycles in the optimal PS-AgNW@Au electrode is measured and it showed an increase of only 22% of its initial sheet resistance indicating its good flexibility. The proposed electrode performs an excellent chemical stability, good conductivity, transparency, and flexibility that makes it a potential candidate for various optoelectronic devices.

摘要

直径小、长径比高、悬浮稳定且易于合成的银纳米线(AgNWs),最近作为氧化铟锡透明导电薄膜的低成本替代品,吸引了光电行业的关注。然而,银纳米线化学性质不稳定,由于与大气成分发生反应,其导电性会随时间降低。这是其广泛工业应用的一个瓶颈。在本研究中,我们旨在通过合成平均直径约为65纳米、长度约为13微米的银纳米线来解决这一问题。然后将制备的银纳米线应用于制造透明、柔性且化学稳定的导电薄膜。制造过程包括将银纳米线悬浮液喷涂在玻璃基板上,随后用刮刀涂覆聚苯乙烯(PS)溶液,并对PS-AgNWs薄膜进行分层。所得薄膜的最佳方阻为24Ω/□,透过率为84%。为进一步提高透明导电薄膜的稳定性,采用表面可扩展的双脉冲电沉积方法在嵌入PS的AgNWs暴露表面涂覆金。最终的镀金透明薄膜在包括长时间暴露于紫外光和硝酸溶液等苛刻条件下表现出显著的稳定性。经过100分钟的紫外/臭氧处理后,最佳PS-AgNW@Au样品的方阻增加量比未镀金样品低15.6倍。此外,测量了最佳PS-AgNW@Au电极在2000次弯曲循环后的方阻变化,结果表明其方阻仅增加了初始方阻的22%,表明其具有良好的柔韧性。所提出的电极具有出色的化学稳定性、良好的导电性、透明度和柔韧性,使其成为各种光电器件的潜在候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ad0/10579339/ec4ae0775cee/41598_2023_44674_Fig1_HTML.jpg

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