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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Quantitative optical extinction-based parametric method for sizing a single core-shell Ag-Ag_2O nanoparticle
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Quantitative optical extinction-based parametric method for sizing a single core-shell Ag-Ag_2O nanoparticle

机译:基于定量消光的参数化方法确定单个核-壳Ag-Ag_2O纳米粒子的尺寸

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This paper develops a parametric method for determining the core radius and shell thickness in small silver-silver-oxide core-shell nanoparticles (Nps) based on single particle optical extinction spectroscopy. The method is based on the study of the relationship between plasmon peak wavelength, full width at half maximum (FWHM) and contrast of the extinction spectra as a function of core radius and shell thickness. This study reveals that plasmon peak wavelength is strongly dependent on shell thickness, whereas FWHM and contrast depend on both variables. These characteristics may be used for establishing an easy and fast stepwise procedure to size core-shell NPs from single particle absorption spectrum. The importance of the method lies in the possibility of monitoring the growth of the silver-oxide layer around small spherical silver Nps in real time. Using the electrostatic approximation of Mie theory, core-shell single particle extinction spectra were calculated for a silver particle's core size smaller than about 20 nm and different thicknesses of silver oxide around it. Analysis of the obtained curves shows a very particular characteristic of the plasmon peak of small silver-silver-oxide Nps, expressed in the fact that its position is strongly dependent on oxide thickness and weakly dependent on the core radius. Even a very thin oxide layer shifts the plasmon peak noticeably, enabling plasmon tuning with appropriate shell thickness. This characteristic, together with the behaviour of FWHM and contrast of the extinction spectra can be combined into a parametric method for sizing both core and shell of single silver Nps in a medium using only optical information. In turn, shell thickness can be related to oxygen content in the Np's surrounding media. The method proposed is applied to size silver Nps from single particle extinction spectrum. The results are compared with full optical spectrum fitting using the electrostatic approximation in Mie theory. The method may be the basis for developing a plasmonic sensor for O_2 concentration based on Ag single NP spectroscopy.
机译:本文开发了一种基于单粒子消光光谱法测定小型银-氧化银核壳纳米粒子(Nps)的核半径和壳厚度的参数方法。该方法是基于对等离激元峰值波长,半峰全宽(FWHM)和消光光谱对比度与核半径和壳厚度之间关系的研究。这项研究表明,等离激元的峰值波长在很大程度上取决于壳的厚度,而FWHM和对比度则取决于这两个变量。这些特性可用于建立简单,快速的分步程序,以从单个粒子吸收光谱确定核-壳NP的大小。该方法的重要性在于实时监测围绕小球形银Nps的氧化银层生长的可能性。使用Mie理论的静电近似,计算出银颗粒的核芯尺寸小于约20 nm,并且周围有不同厚度的氧化银,计算出核-壳单颗粒消光光谱。对获得的曲线的分析显示出小的银-银-氧化物Nps的等离激元峰的非常特殊的特征,表现为其位置在很大程度上取决于氧化物的厚度而对核心半径的依赖则微弱。即使是非常薄的氧化层也会明显改变等离激元峰,从而在适当的壳厚度下进行等离激元调谐。可以将此特征与FWHM的行为以及消光光谱的对比度结合在一起,成为仅使用光学信息即可确定介质中单个银Nps核和壳大小的参数方法。反过来,壳的厚度可能与Np周围介质中的氧含量有关。所提出的方法适用于从单粒子消光光谱确定银Nps的大小。将结果与Mie理论中使用静电近似的全光谱拟合进行比较。该方法可能是基于Ag单NP光谱技术开发O_2浓度等离子体传感器的基础。

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