Introductory Overview of Layer Formation Techniques of Ag Nanowires on Flexible Polymeric Substrates

Heebo Ha, N. Qaiser, Byungil Hwang
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Abstract

Ag nanowire electrodes are promising substitutes for traditional indium tin oxide (ITO) electrodes in optoelectronic applications owing to their impressive conductivity, flexibility, and transparency. This review provides an overview of recent trends in Ag nanowire electrode layer formation, including key developments, challenges, and future prospects. It addresses several challenges in integrating Ag nanowires into practical applications, such as scalability, cost-effectiveness, substrate compatibility, and environmental considerations. Additionally, drawing from current trends and emerging technologies, this review explores potential avenues for improving Ag nanowire layer-forming technologies, such as material advancements, manufacturing scalability, and adaptability to evolving electronic device architectures. This review serves as a resource for researchers, engineers, and stakeholders in nanotechnology and optoelectronics, and underscores the relationship between advancements in patterning and the application of Ag nanowire electrodes. Through an examination of key developments, challenges, and future prospects, this review contributes to the collective knowledge base and encourages continued innovation in the ever-evolving realm of Ag nanowire-based optoelectronics.
柔性聚合物基底上的银纳米线层形成技术介绍概览
银纳米线电极因其令人印象深刻的导电性、灵活性和透明度,有望在光电应用中替代传统的氧化铟锡(ITO)电极。本综述概述了银纳米线电极层形成的最新趋势,包括主要发展、挑战和未来前景。它探讨了将银纳米线集成到实际应用中的几个挑战,如可扩展性、成本效益、基底兼容性和环境因素。此外,本综述还从当前趋势和新兴技术出发,探讨了改进银纳米线层形成技术的潜在途径,如材料进步、制造可扩展性以及对不断发展的电子设备架构的适应性。本综述为纳米技术和光电子学领域的研究人员、工程师和利益相关者提供了资源,并强调了图案化技术的进步与银纳米线电极应用之间的关系。通过对关键发展、挑战和未来前景的研究,本综述为集体知识库做出了贡献,并鼓励在不断发展的银纳米线光电子领域持续创新。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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