首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Silver-silver oxide core-shell nanoparticles by femtosecond laser ablation: core and shell sizing by extinction spectroscopy
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Silver-silver oxide core-shell nanoparticles by femtosecond laser ablation: core and shell sizing by extinction spectroscopy

机译:飞秒激光烧蚀银-氧化银核-壳纳米粒子:消光光谱法测定核和壳的尺寸

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摘要

The generation of small silver metal nanoparticles (Nps) by ultrashort pulsed laser ablation has been an active area of research in recent years due to their interest in several fields of applied research such as biotechnology and material research, in particular those with sizes smaller than 10 nm. In general, laser ablation tends to produce environmentally clean metal Nps compared with wet chemical methods. However, since silver may be oxidized in the presence of water or ethanol, core-shell silver-silver oxide (Ag-Ag2O) Nps can be formed, whose size and thickness must be determined and characterized for functionalization related to future applications. This work analyses the size characteristics of core-shell Ag-Ag2O colloid nanostructures (smaller than 10 nm) obtained by femtosecond laser ablation of solid silver targets in different liquid media (water or ethanol) through the study of their optical extinction spectra. A fit of full experimental spectrum using Mie theory allows the determination of core size and shell thickness distributions as a function of fluence. The red-shift of the plasmon peak wavelength with respect to the bare-core peak wavelength at 400 nm, produced by the oxide shell, may be easily measured even for very small thicknesses. It was found that the dominant Ag2O effective thickness is inversely proportional to the fluence, reaching a maximum of 0.2 nm for a fluence of 60 J cm(-2) and a minimum of 0.04 nm for a fluence of 1000 J cm(-2).
机译:由于超短脉冲激光烧蚀产生的小型银金属纳米颗粒(Nps)近年来已成为研究的活跃领域,这是因为它们对生物技术和材料研究等应用研究的多个领域感兴趣,特别是尺寸小于10的那些纳米通常,与湿化学方法相比,激光烧蚀倾向于产生环境清洁的金属Nps。但是,由于银可能会在水或乙醇的存在下被氧化,因此会形成核-壳型银-氧化银(Ag-Ag2O)Nps,其大小和厚度必须确定,并针对与未来应用相关的功能进行表征。这项工作通过研究其消光光谱,分析了飞秒激光烧蚀不同液体介质(水或乙醇)中的固态银靶所获得的核-壳Ag-Ag2O胶体纳米结构(小于10 nm)的尺寸特征。使用Mie理论拟合完整的实验光谱可以确定核芯尺寸和壳厚度分布与注量的关系。即使对于非常小的厚度,由氧化物壳产生的等离子体激元峰值波长相对于400nm的裸芯峰值波长的红移也可以容易地测量。发现主要的Ag2O有效厚度与能量密度成反比,对于60 J cm(-2)的能量密度最大为0.2 nm,对于1000 J cm(-2)的能量密度最小为0.04 nm。 。

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