Karaballi Reem A, Monfared Yashar E, Dasog Mita
Department of Chemistry, Dalhousie University, 6274 Coburg Road, Halifax, NS, B3H 4R2, Canada.
Chemistry. 2020 Jul 14;26(39):8499-8505. doi: 10.1002/chem.201905217. Epub 2020 May 14.
The search for new plasmonic materials that are low-cost, chemically and thermally stable, and exhibit low optical losses has garnered significant attention among researchers. Recently, metal nitrides have emerged as promising alternatives to conventional, noble-metal-based plasmonic materials, such as silver and gold. Many of the initial studies on metal nitrides have focused on computational prediction of the plasmonic properties of these materials. In recent years, several synthetic methods have been developed to enable empirical analysis. This review highlights synthetic techniques for the preparation of plasmonic metal nitride nanoparticles, which are predominantly free-standing, by using solid-state and solid-gas phase reactions, nonthermal and arc plasma methods, and laser ablation. The physical properties of the nanoparticles, such as shape, size, crystallinity, and optical response, obtained with such synthetic methods are also summarized.
寻找低成本、化学和热稳定且具有低光学损耗的新型等离子体材料已引起研究人员的广泛关注。最近,金属氮化物已成为传统的基于贵金属的等离子体材料(如银和金)的有前途的替代品。许多关于金属氮化物的初步研究都集中在这些材料等离子体性质的计算预测上。近年来,已经开发了几种合成方法以进行实证分析。本综述重点介绍了通过固态和固气相反应、非热和电弧等离子体方法以及激光烧蚀制备主要为独立式的等离子体金属氮化物纳米颗粒的合成技术。还总结了用这些合成方法获得的纳米颗粒的物理性质,如形状、尺寸、结晶度和光学响应。