银纳米线 (AgNWs) 在柔性透明导电电极应用中的后处理效果:微型综述

Nasikhudin Nasikhudin, Yusril Al Fath, Istiqomah Istiqomah, Hari Rahmadani, Markus Diantoro, H. Pujiarti
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引用次数: 0

摘要

透明柔性电极(TFE)对于扩展柔性可穿戴电子设备极为重要。银纳米线(AgNWs)具有高导电性、透明性和柔韧性,已被广泛研究用于替代氧化铟锡(ITO)作为商用 TFE。AgNWs 已取代基于 ITO 的电极,成为柔性、透明和导电电极 (FTCE) 的首选方法。AgNWs 在导电性、透射率、柔韧性和低薄层电阻方面优于其他材料,如还原石墨烯氧化物(RGO)、陶瓷材料、碳纳米管(CNT)和导电聚合物。将 AgNWs 用作柔性基底的技术有很多,包括电纺丝、喷涂、旋涂和刮刀。基于种子的生长和模板辅助合成是可用于生成 AgNWs 的两种基本合成技术。然而,AgNWs 较差的粘合性、热稳定性和电稳定性开始成为其在各种设备中广泛应用的瓶颈。因此,AgNWs 的合成工艺开始转向其他方法,如湿化学和多元醇。本文简明扼要地总结了包括紫外线辐射、微波、超声、淬火等后处理方法在内的各种进展,以期在测试机械性能和提高 AgNWs 性能方面向前迈出一步。
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Silver Nanowires (AgNWs) Post-Treatment Effect in Application of Flexible Transparent and Conductive Electrodes: A Mini Review
Transparent flexible electrodes (TFEs) are extremely crucial for expanding flexible and wearable electronic devices. Silver nanowires (AgNWs) have been extensively investigated as an alternative to replace Indium Tin Oxide (ITO) as a commercial TFE due to their high conductivity, transparency, and flexibility. AgNWs have replaced ITO-based electrodes as the preferred approach in flexible, transparent, and conductive electrodes (FTCE). AgNWs outperform other materials, such as Reduced Graphene Oxide (RGO), ceramic material, Carbon Nanotubes (CNT), and conductive polymers, in terms of electrical conductivity, transmittance, flexibility, and low sheet resistance. Numerous techniques, including as electrospinning, spray coating, spin coating, and doctor blades, are used to use AgNWs as flexible substrates. Seed-based growth and template-assisted synthesis are two fundamental synthesis techniques that could be used to generate AgNWs. However, poor adhesiveness, and thermal and electrical stability, begin to be bottlenecks for AgNWs as high deployment in a variety of devices. So AgNWs synthesis process began to shift to other methods, such as wet chemical and polyol. In this paper, short and clear summary of various advances including post-treatment methods such as UV radiation, microwave, sonication, quenching, and so on is conducted to be one step forward to test mechanical properties and to improve AgNWs performance.
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