학술논문

Optical and Electron Microscopy Studies of Al2O3 Nanomatrices with Embedded ADP and KB5 Nanocrystals
Document Type
Conference
Source
2022 IEEE 12th International Conference Nanomaterials: Applications & Properties (NAP) Nanomaterials: Applications & Properties (NAP), 2022 IEEE 12th International Conference. :NCI02-1-NCI02-4 Sep, 2022
Subject
Bioengineering
Engineered Materials, Dielectrics and Plasmas
Fields, Waves and Electromagnetics
General Topics for Engineers
Photonics and Electrooptics
Scanning electron microscopy
Scattering
Refractive index
Crystals
Optical variables control
Reflection
Reflection coefficient
nanoporous matrices
ADP crystal
KB5 crystals
SEM images of nanocomposites
transmission and reflection spectra
Language
Abstract
In this contribution, we report on the optical spectra of nanocomposite based on the Al 2 O 3 nanoporous matrices with embedded ADP and KB5 nanocrystals. The reflection, absorption, and transmission spectra were recorded in the range of $\mathbf{1}-\mathbf{50}\ \boldsymbol{\mu} \mathbf{m}$. The reflection coefficient of Al 2 O 3 nanomatrices depends on the method of obtaining Al sheets, which are used for the manufacture of Al 2 O 3 host matrices. For example, the value of the reflection coefficient of nanomatrices with embedded ADP crystals was 7-5.5%, whereas this coefficient for Al 2 O 3 nanomatrices with KB5 crystals was smaller, 4.5-4.0%. The reflection spectra of the nanoporous matrices of Al 2 O 3 with the embedded ADP crystals can be decreased to $\sim \mathbf{1}\%$ in the range of $\mathbf{1}-\mathbf{10}\ \boldsymbol{\mu} \mathbf{m}$ which may be explained either as a result of high diffusion scattering or a low refractive index. In addition, the performed SEM analysis has indicated that $\mathbf{Al}_{\mathbf{2}}\mathbf{O}_{\mathbf{3}}+\mathbf{ADP}$ samples with the same pore diameter of 75 nm practically have similar percentages of the coverage area, while for $\mathbf{Al}_{\mathbf{2}}\mathbf{O}_{\mathbf{3}}+\mathbf{KB}\mathbf{5}$ samples, the coverage area is almost clean.