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原子层沉积包覆的纳米多孔氧化铝结构的光学表征:样品几何形状或包覆层材料的影响。

Optical Characterization of ALD-Coated Nanoporous Alumina Structures: Effect of Sample Geometry or Coated Layer Material.

作者信息

Cuevas Ana Laura, Vega Víctor, Domínguez Antonia, González Ana Silvia, Prida Víctor M, Benavente Juana

机构信息

Unidad de Nanotecnología, SCBI Centro, Universidad de Málaga, E-29071 Málaga, Spain.

Laboratorio de Membranas Nanoporosas, Servicicios Científico-Técnicos, Universidad de Oviedo, E-33006 Oviedo, Spain.

出版信息

Micromachines (Basel). 2023 Apr 12;14(4):839. doi: 10.3390/mi14040839.

Abstract

Optical characterization of nanoporous alumina-based structures (NPA-bSs), obtained by ALD deposition of a thin conformal SiO layer on two alumina nanosupports with different geometrical parameters (pore size and interpore distance), was performed by two noninvasive and nondestructive techniques such as spectroscopic ellipsometry (SE) and photoluminescence (Ph) spectra. SE measurements allow us to estimate the refraction index and extinction coefficient for the studied samples and their dependence with wavelength for the 250-1700 nm interval, showing the effect of sample geometry and cover-layer material (SiO, TiO, or FeO), which significantly affect the oscillatory character of both parameters, as well as changes associated with the light incidence angle, which are attributed to surface impurities and inhomogeneity. Photoluminescence curves exhibit a similar shape independently of sample pore-size/porosity, but they seem to affect intensity values. This analysis shows the potential application of these NPA-bSs platforms to nanophotonics, optical sensing, or biosensing.

摘要

通过在具有不同几何参数(孔径和孔间距)的两个氧化铝纳米支撑体上通过原子层沉积(ALD)沉积薄的保形SiO层获得的纳米多孔氧化铝基结构(NPA-bS)的光学表征,是通过两种非侵入性和非破坏性技术进行的,如光谱椭偏仪(SE)和光致发光(Ph)光谱。SE测量使我们能够估计所研究样品的折射率和消光系数,以及它们在250 - 1700 nm波长范围内与波长的关系,显示出样品几何形状和覆盖层材料(SiO、TiO或FeO)的影响,这显著影响了这两个参数的振荡特性,以及与光入射角相关的变化,这些变化归因于表面杂质和不均匀性。光致发光曲线呈现出相似的形状,与样品的孔径/孔隙率无关,但它们似乎会影响强度值。该分析表明了这些NPA-bS平台在纳米光子学、光学传感或生物传感方面的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55af/10143564/82bf12f4ab6a/micromachines-14-00839-g001.jpg

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