Design and Optimization of Antireflection Coating Performance for UV Spectrum by Use CdS Nanoparticles on Si Substrate

In this study, the optical properties of CdS as a function of nanoparticle size were calculated and investigated and it's used in design theory for single-layer Antireflection coatings at a quarter wave thickness at λo in the UV spectrum range of 300-400 nm. Silicon have been selected as substr...

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Main Authors: Bashar M. Salih, Asmat R. Abdul-Gaffor
Format: Article
Language:English
Published: University of Anbar 2017-10-01
Series:مجلة جامعة الانبار للعلوم الصرفة
Subjects:
Online Access:https://juaps.uoanbar.edu.iq/article_132434_f0529390b685950e0301d6df69417963.pdf
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author Bashar M. Salih
Asmat R. Abdul-Gaffor
author_facet Bashar M. Salih
Asmat R. Abdul-Gaffor
author_sort Bashar M. Salih
collection DOAJ
description In this study, the optical properties of CdS as a function of nanoparticle size were calculated and investigated and it's used in design theory for single-layer Antireflection coatings at a quarter wave thickness at λo in the UV spectrum range of 300-400 nm. Silicon have been selected as substrate. MATLAB language programs with version of 7.11.0 were used to describe the reflectance as a function of particle size, refractive indexes, energy gap and the wavelength at normal and oblique incidence which are depending on Brus model and Characteristic Matrix theory as a basic theory.The coating design (Air/Nano CdS/Si) by was obtained at a lower value of (0.0093%) at the incident angle of 0° with wavelength of 350 nm and particle size of (Ps = 3 nm). These coating are promising for solar cell application.
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spelling doaj.art-17835ca0eba3458e97b476ea4f2851972023-12-28T21:58:18ZengUniversity of Anbarمجلة جامعة الانبار للعلوم الصرفة1991-89412706-67032017-10-01101344310.37652/juaps.2016.132434132434Design and Optimization of Antireflection Coating Performance for UV Spectrum by Use CdS Nanoparticles on Si SubstrateBashar M. Salih0Asmat R. Abdul-Gaffor1University of Anbar College of ScienceUniversity of Anbar - College of ScienceIn this study, the optical properties of CdS as a function of nanoparticle size were calculated and investigated and it's used in design theory for single-layer Antireflection coatings at a quarter wave thickness at λo in the UV spectrum range of 300-400 nm. Silicon have been selected as substrate. MATLAB language programs with version of 7.11.0 were used to describe the reflectance as a function of particle size, refractive indexes, energy gap and the wavelength at normal and oblique incidence which are depending on Brus model and Characteristic Matrix theory as a basic theory.The coating design (Air/Nano CdS/Si) by was obtained at a lower value of (0.0093%) at the incident angle of 0° with wavelength of 350 nm and particle size of (Ps = 3 nm). These coating are promising for solar cell application.https://juaps.uoanbar.edu.iq/article_132434_f0529390b685950e0301d6df69417963.pdfnano cdsbrus model
spellingShingle Bashar M. Salih
Asmat R. Abdul-Gaffor
Design and Optimization of Antireflection Coating Performance for UV Spectrum by Use CdS Nanoparticles on Si Substrate
مجلة جامعة الانبار للعلوم الصرفة
nano cds
brus model
title Design and Optimization of Antireflection Coating Performance for UV Spectrum by Use CdS Nanoparticles on Si Substrate
title_full Design and Optimization of Antireflection Coating Performance for UV Spectrum by Use CdS Nanoparticles on Si Substrate
title_fullStr Design and Optimization of Antireflection Coating Performance for UV Spectrum by Use CdS Nanoparticles on Si Substrate
title_full_unstemmed Design and Optimization of Antireflection Coating Performance for UV Spectrum by Use CdS Nanoparticles on Si Substrate
title_short Design and Optimization of Antireflection Coating Performance for UV Spectrum by Use CdS Nanoparticles on Si Substrate
title_sort design and optimization of antireflection coating performance for uv spectrum by use cds nanoparticles on si substrate
topic nano cds
brus model
url https://juaps.uoanbar.edu.iq/article_132434_f0529390b685950e0301d6df69417963.pdf
work_keys_str_mv AT basharmsalih designandoptimizationofantireflectioncoatingperformanceforuvspectrumbyusecdsnanoparticlesonsisubstrate
AT asmatrabdulgaffor designandoptimizationofantireflectioncoatingperformanceforuvspectrumbyusecdsnanoparticlesonsisubstrate