Sharme Razia Khan, Quijada Manuel, Terrones Mauricio, Rana Mukti M
Division of Physics, Engineering, Mathematics and Computer Sciences, and Research on Nanomaterial-Based Integrated Circuits and Electronics (NICE), Delaware State University, Dover, DE 19901, USA.
NASA Goddard Space Flight Center, 8800 Greenbelt Road, Greenbelt, MD 20771, USA.
Materials (Basel). 2024 Sep 17;17(18):4559. doi: 10.3390/ma17184559.
Thin conducting films are distinct from bulk materials and have become prevalent over the past decades as they possess unique physical, electrical, optical, and mechanical characteristics. Comprehending these essential properties for developing novel materials with tailored features for various applications is very important. Research on these conductive thin films provides us insights into the fundamental principles, behavior at different dimensions, interface phenomena, etc. This study comprehensively analyzes the intricacies of numerous commonly used thin conducting films, covering from the fundamentals to their advanced preparation methods. Moreover, the article discusses the impact of different parameters on those thin conducting films' electronic and optical properties. Finally, the recent future trends along with challenges are also highlighted to address the direction the field is heading towards. It is imperative to review the study to gain insight into the future development and advancing materials science, thus extending innovation and addressing vital challenges in diverse technological domains.
薄导电薄膜不同于块状材料,在过去几十年中已变得十分普遍,因为它们具有独特的物理、电学、光学和机械特性。了解这些基本特性对于开发具有适合各种应用的定制特性的新型材料非常重要。对这些导电薄膜的研究为我们提供了关于基本原理、不同维度下的行为、界面现象等方面的见解。本研究全面分析了众多常用薄导电薄膜的复杂性,涵盖从基础到其先进制备方法。此外,本文还讨论了不同参数对这些薄导电薄膜的电子和光学性能的影响。最后,还强调了近期的未来趋势以及挑战,以指明该领域的发展方向。有必要审视这项研究,以洞察未来发展并推动材料科学进步,从而在不同技术领域拓展创新并应对重大挑战。