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超薄金刚石纳米薄膜——发展、挑战与应用

Ultrathin Diamond Nanofilms-Development, Challenges, and Applications.

作者信息

Handschuh-Wang Stephan, Wang Tao, Tang Yongbing

机构信息

College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen, 518055, China.

Functional Thin Films Research Center, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen, 518055, China.

出版信息

Small. 2021 Jul;17(30):e2007529. doi: 10.1002/smll.202007529. Epub 2021 May 26.

Abstract

Diamond is a highly attractive material for ample applications in material science, engineering, chemistry, and biology because of its favorable properties. The advent of conductive diamond coatings and the steady demand for miniaturization in a plethora of economic and scientific fields resulted in the impetus for interdisciplinary research to develop intricate deposition techniques for thin (≤1000 nm) and ultra-thin (≤100 nm) diamond films on non-diamond substrates. By virtue of the lowered thickness, diamond coatings feature high optical transparency in UV-IR range. Combined with their semi-conductivity and mechanical robustness, they are promising candidates for solar cells, optical devices, transparent electrodes, and photochemical applications. In this review, the difficulty of (ultra-thin) diamond film development and production, introduction of important stepping stones for thin diamond synthesis, and summarization of the main nucleation procedures for diamond film synthesis are elucidated. Thereafter, applications of thin diamond coatings are highlighted with a focus on applications relying on ultrathin diamond coatings, and the excellent properties of the diamond exploited in said applications are discussed, thus guiding the reader and enabling the reader to quickly get acquainted with the research field of ultrathin diamond coatings.

摘要

由于其优良的特性,金刚石是一种在材料科学、工程学、化学和生物学等众多应用领域极具吸引力的材料。导电金刚石涂层的出现以及众多经济和科学领域对小型化的持续需求,推动了跨学科研究,以开发在非金刚石衬底上制备薄(≤1000 nm)和超薄(≤100 nm)金刚石薄膜的复杂沉积技术。由于厚度降低,金刚石涂层在紫外-红外范围内具有高光学透明度。结合其半导电性和机械强度,它们是太阳能电池、光学器件、透明电极和光化学应用的有前途的候选材料。在这篇综述中,阐述了(超薄)金刚石薄膜开发和生产的困难、介绍了薄金刚石合成的重要基石,并总结了金刚石薄膜合成的主要成核过程。此后,重点介绍了薄金刚石涂层的应用,特别是依赖超薄金刚石涂层的应用,并讨论了在这些应用中所利用的金刚石的优异性能,从而引导读者并使读者能够快速熟悉超薄金刚石涂层的研究领域。

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