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Study and preparation of optoelectronic properties of AgAl1-xInxSe2/Si heterojunction solar cell applications
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􀀤􀁅􀁖􀁗􀁕􀁄􀁆􀁗􀀑􀀃􀀬􀁑􀀃􀁗􀁋􀁌􀁖􀀃􀁕􀁈􀁖􀁈􀁄􀁕􀁆􀁋􀀏􀀃􀀤􀁊􀀤􀁏􀀔􀀐􀁛􀀬􀁑􀁛􀀶􀁈􀀕􀀃􀀋􀀤􀀤􀀬􀀶􀀌􀀃􀁆􀁒􀁐􀁓􀁒􀁘􀁑􀁇􀀃􀁄􀁏􀁏􀁒􀁜􀁖􀀃􀁓􀁕􀁈􀁓􀁄􀁕􀁈􀁇􀀃􀁉􀁒􀁕􀀃􀁇􀁌􀁉􀁉􀁈􀁕􀁈􀁑􀁗􀀃􀁛􀀃􀀋􀀓􀀑􀀖􀀏􀀃􀀓􀀑􀀙􀀃􀁄􀁑􀁇􀀃􀀓􀀑􀀜􀀌􀀃􀁅􀁜􀀃􀁐􀁈􀁏􀁗􀁌􀁑􀁊􀀃 􀁗􀁋􀁈􀁐􀀃 􀁌􀁑􀀃 􀁄􀁑􀀃 􀁈􀁙􀁄􀁆􀁘􀁄􀁗􀁈􀁇􀀃 􀁔􀁘􀁄􀁕􀁗􀁝􀀃 􀁗􀁘􀁅􀁈􀀃 􀀋􀀕􀀑􀀘􀀍􀀔􀀓􀀐􀀖􀀃 􀁗􀁒􀁕􀁕􀀌􀀑􀀃 􀀤􀀤􀀬􀀶􀀃 􀁚􀁌􀁗􀁋􀀃 􀁇􀁌􀁉􀁉􀁈􀁕􀁈􀁑􀁗􀀃 􀀬􀁑􀁇􀁌􀁘􀁐􀀃 􀁆􀁒􀁑􀁆􀁈􀁑􀁗􀁕􀁄􀁗􀁌􀁒􀁑􀁖􀀃 􀁛􀀃 􀀋􀀓􀀑􀀖􀀏􀀃 􀀓􀀑􀀙􀀃 􀁄􀁑􀁇􀀃 􀀓􀀑􀀜􀀌􀀏􀀃 􀁗􀀠􀀚􀀘􀀓􀂓􀀖􀀓􀁑􀁐􀀃􀁗􀁋􀁌􀁑􀀃􀁉􀁌􀁏􀁐􀁖􀀃􀁇􀁈􀁓􀁒􀁖􀁌􀁗􀁈􀁇􀀃􀁅􀁜􀀃􀁗􀁋􀁈􀁕􀁐􀁄􀁏􀀃􀁈􀁙􀁄􀁓􀁒􀁕􀁄􀁗􀁌􀁒􀁑􀀃􀁐􀁈􀁗􀁋􀁒􀁇􀀃􀁚􀁌􀁗􀁋􀀃􀁇􀁈􀁓􀁒􀁖􀁌􀁗􀁌􀁒􀁑􀀃􀁕􀁄􀁗􀁈􀀃􀀋􀀘􀂓􀀓􀀑􀀔􀀌􀀃􀁑􀁐􀀃􀁖􀁈􀁆􀀐􀀔􀀃􀁒􀁑􀀃􀁊􀁏􀁄􀁖􀁖􀀃􀁄􀁑􀁇􀀃􀁓􀀐 􀁗􀁜􀁓􀁈􀀃􀁖􀁌􀁏􀁌􀁆􀁒􀁑􀀃􀁖􀁘􀁅􀁖􀁗􀁕􀁄􀁗􀁈􀁖􀀃􀁗􀁒􀀃􀁖􀁗􀁘􀁇􀁜􀀃􀁖􀁗􀁕􀁘􀁆􀁗􀁘􀁕􀁄􀁏􀀏􀀃􀁒􀁓􀁗􀁌􀁆􀁄􀁏􀀏􀀃􀁈􀁏􀁈􀁆􀁗􀁕􀁌􀁆􀁄􀁏􀀃􀁓􀁕􀁒􀁓􀁈􀁕􀁗􀁌􀁈􀁖􀀃􀁄􀁑􀁇􀀃􀁗􀁒􀀃􀁉􀁄􀁅􀁕􀁌􀁆􀁄􀁗􀁈􀀃􀀃􀀃􀁖􀁒􀁏􀁄􀁕􀀃􀁆􀁈􀁏􀁏􀁖􀀑􀀃􀀩􀁕􀁒􀁐􀀃􀁈􀁑􀁈􀁕􀁊􀁜􀀃􀁇􀁌􀁖􀁓􀁈􀁕􀁖􀁌􀁙􀁈􀀃 􀁛􀀐􀁕􀁄􀁜􀀃􀁖􀁓􀁈􀁆􀁗􀁕􀁒􀁐􀁈􀁗􀁈􀁕􀀃􀀋􀀨􀀧􀀶􀀌􀀃􀁉􀁒􀁘􀁑􀁇􀀃􀁗􀁋􀁈􀀃􀁄􀁐􀁒􀁘􀁑􀁗􀀃􀁒􀁕􀀃􀀋􀁆􀁒􀁑􀁆􀁈􀁑􀁗􀁕􀁄􀁗􀁌􀁒􀁑􀀌􀀃􀁒􀁉􀀃􀁗􀁋􀁈􀀃􀁈􀁏􀁈􀁐􀁈􀁑􀁗􀁖􀀃􀀋􀀤􀁊􀀏􀀃􀀤􀁏􀀏􀀃􀀬􀁑􀀏􀀃􀀶􀁈􀀌􀀃􀁒􀁉􀀃􀁄􀁏􀁏􀁒􀁜􀁖􀀏􀀃􀁗􀁒􀀃􀁖􀁗􀁘􀁇􀁜􀁌􀁑􀁊􀀃􀁗􀁋􀁈􀀃 􀁗􀁒􀁓􀁒􀁊􀁕􀁄􀁓􀁋􀁜􀀏􀀃􀁈􀁖􀁗􀁌􀁐􀁄􀁗􀁈􀀃􀁗􀁋􀁈􀀃􀁖􀁘􀁕􀁉􀁄􀁆􀁈􀀃􀁕􀁒􀁘􀁊􀁋􀁑􀁈􀁖􀁖􀀃􀁄􀁑􀁇􀀃􀁄􀁙􀁈􀁕􀁄􀁊􀁈􀀃􀁊􀁕􀁄􀁌􀁑􀀃􀁖􀁌􀁝􀁈􀀃􀁚􀁄􀁖􀀃􀁘􀁖􀁈􀁇􀀃􀀤􀀩􀀰􀀃􀁗􀁈􀁆􀁋􀁑􀁌􀁔􀁘􀁈􀀏􀀃􀁗􀁋􀁈􀀃􀁕􀁈􀁖􀁘􀁏􀁗􀁖􀀃􀁖􀁋􀁒􀁚􀀃􀁗􀁋􀁄􀁗􀀃􀁗􀁋􀁈􀀃􀁊􀁕􀁄􀁌􀁑􀀃 􀁖􀁌􀁝􀁈􀀃 􀁌􀁑􀁆􀁕􀁈􀁄􀁖􀁈􀀃 􀁚􀁌􀁗􀁋􀀃 􀀬􀁑􀀐􀁆􀁒􀁑􀁗􀁈􀁑􀁗􀀃 􀁌􀁑􀁆􀁕􀁈􀁄􀁖􀁈􀀑􀀃 􀀲􀁓􀁗􀁌􀁆􀁄􀁏􀀃 􀁐􀁈􀁄􀁖􀁘􀁕􀁈􀁐􀁈􀁑􀁗􀁖􀀃 􀁖􀁋􀁒􀁚􀀃 􀁗􀁋􀁄􀁗􀀃 􀁗􀁋􀁈􀀃 􀁓􀁕􀁈􀁓􀁄􀁕􀁄􀁗􀁌􀁒􀁑􀀃 􀀤􀀤􀀬􀀶􀀃 􀁗􀁋􀁌􀁑􀀃 􀁉􀁌􀁏􀁐􀁖􀀃 􀁋􀁄􀁙􀁈􀀃 􀁋􀁌􀁊􀁋􀀃 􀁄􀁅􀁖􀁒􀁕􀁓􀁗􀁌􀁒􀁑􀀃􀁌􀁑􀀃􀁙􀁌􀁖􀁌􀁅􀁏􀁈􀀃􀁕􀁄􀁑􀁊􀁈􀀑􀀃􀀷􀁋􀁈􀀃􀁄􀁏􀁏􀁒􀁚􀁈􀁇􀀃􀁇􀁌􀁕􀁈􀁆􀁗􀀃􀁈􀁑􀁈􀁕􀁊􀁜􀀃􀁊􀁄􀁓􀀃􀁚􀁄􀁖􀀃􀁇􀁈􀁆􀁕􀁈􀁄􀁖􀁈􀁖􀀃􀁚􀁌􀁗􀁋􀀃􀁌􀁑􀁆􀁕􀁈􀁄􀁖􀁈􀀃􀀬􀁑􀀐􀁆􀁒􀁑􀁗􀁈􀁑􀁗􀀑􀀃􀀤􀁏􀁏􀀃􀁉􀁌􀁏􀁐􀁖􀀃􀁚􀁈􀁕􀁈􀀃􀀱􀀐􀁗􀁜􀁓􀁈􀀃 􀁚􀁋􀁌􀁏􀁈􀀃􀁗􀁋􀁈􀀃􀁆􀁒􀁑􀁆􀁈􀁑􀁗􀁕􀁄􀁗􀁌􀁒􀁑􀀃􀁒􀁉􀀃􀁗􀁋􀁈􀀃􀁆􀁋􀁄􀁕􀁊􀁈􀀃􀁆􀁄􀁕􀁕􀁌􀁈􀁕􀁖􀀃􀁌􀁑􀁆􀁕􀁈􀁄􀁖􀁈􀁖􀀑􀀃􀀷􀁋􀁈􀀃􀁒􀁓􀁗􀁌􀁐􀁘􀁐􀀃􀁆􀁒􀁑􀁇􀁌􀁗􀁌􀁒􀁑􀀃􀁒􀁉􀀃􀁈􀁉􀁉􀁌􀁆􀁌􀁈􀁑􀁆􀁜􀀃􀀋􀈘􀀃􀀠􀀘􀀑􀀖􀀕􀀌􀀑􀀃􀀸􀁑􀁇􀁈􀁕􀀃􀁌􀁏􀁏􀁘􀁐􀁌􀁑􀁄􀁗􀁌􀁒􀁑􀀃 􀁉􀁒􀁘􀁑􀁇􀀃􀁚􀁋􀁈􀁕􀁈􀀃􀀋􀁛􀀠􀀓􀀑􀀙􀀏􀀃􀁗􀀠􀀚􀀘􀀓􀂓􀀖􀀓􀀃􀁑􀁐􀀌􀀃

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Publication Date
Wed Apr 20 2022
Journal Name
Ibn Al-haitham Journal For Pure And Applied Sciences
Optical Properties of Organic Beetroot Dye and its Different Applications
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    Extraction and preparation of red organic dye from beetroot plant in different concentrations by using the solvent extraction process. Ethanol was the solvent used to prepare five different concentrations at the ratio of (Dye: Ethanol) abbreviated (D: E) 5:0,4:1, 3:2, 2:3,1:4. The optical, structural, and morphological properties are studied for the samples. The results appeared using the UV-Vis spectroscope the maximum peak of absorption (A) spectrum at wavelength Aλmax=480 nm when the transmittance (T) at the same wavelength 25% and the reflectivity 0.8%. Florescent (F) spectrum of beetroot dye is measured at wavelength Fλmax=535nm achieved to redshift about Δλ=55 nm. Also, measured the energy band gap

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Publication Date
Tue Sep 01 2020
Journal Name
Baghdad Science Journal
Preparation of Polymeric Composites from Polypropylene and Palm Fronds and the Study of Some of Their Physical Properties
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Abstract:
              In this study a type of polymeric composites from melting poly propylene as a basic substance with Palm fronds powder were prepared. Evaluation of polymeric composites was done by studying some of it is mechanical properties, which included:Yong modulus (E), Impact Strength (I.S), Brinell hardness (B.H) and Compression Strength (C.S). The polymeric composites were studied before and after reinforcment by comparing between them. There was an increase in resistance of Yong modulus (E), Impact Strength (I.S), Brinell hardness (B.H) and compression Strength (C.S). Also, the effect of some acids were studied such as (HCl, H2

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Publication Date
Tue Apr 02 2024
Journal Name
Iraqi Journal Of Applied Physics
Effect of Substrate Temperature on Characteristics and Gas Sensing Properties of Nb2O5/Si Thin Films
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Thin films of Nb2O5 have been successfully deposited using the DC reactive magnetron sputtering technique to manufacture NH3 gas sensors. These films have been annealed at a high temperature of 800°C for one hour. The assessment of the Nb2O5 thin films structural, morphological, and electrical characteristics was carried out using several methods such as X-ray diffraction (XRD), atomic force microscopy (AFM), energy-dispersive X-ray spectroscopy (EDS), Hall effect measurements, and sensitivity assessments. The XRD analysis confirms the polycrystalline composition of the Nb2O5 thin films with a hexagonal crystal structure. Furthermore, the sensitivity, response time, and recovery time of the gas sensor were evaluated for the Nb2O5 thin film

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Publication Date
Fri Oct 16 2020
Journal Name
Int J Energy Res
Structural, electronic and optoelectronic properties of AB5C8 (A = Cu/Ag; B = In and C = S, Se and Te) compounds
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Ternary semiconductors AB5C8 (A = Cu/Ag, B = In and C = S, Se or Te) have been investigated. The CuIn5S8 and AgIn5S8 have been synthesize in cubic spinel structure with space group (Fd3m), whereas CuIn5Se8, AgIn5Se8, CuIn5Te8 and AgIn5Te8 have tetragonal structures with space group P-42m. The relaxed crystal geometry, electrical properties such as electronic band structure and optoelectronic properties are predicted by using full potential method in this work. For the determination of relaxed crystal geometry, the gradient approximation (PBE-GGA) is used. All the studied compounds are semiconductors based on their band structures in agreement with the experimental results, and their bulk moduli are in the range 35 to 69 GPa. Wide absorption

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Publication Date
Mon Mar 08 2021
Journal Name
Baghdad Science Journal
Manufacturing concentrates Alholucramih for use in increasing the efficiency of solar cell
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A new way to Systems concentrates have been clarified and that allows a concentration high and analysis to automatically wavelengths of the spectrum of this system analyst of the spectrum and the center is built on Holucram Nafez gives less absorbency with efficient diffraction high when the wavelength (900 nm), which will be useful for Khallaya solar

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Publication Date
Mon Feb 04 2019
Journal Name
Iraqi Journal Of Physics
Rapid thermal oxidation of copper nanostructure thin film for solar cell fabrication
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In the present work is the deposition of copper oxide using the pulsed laser deposition technique using Reactive Pulsed Laser as a Deposition technique (RPLD), 1.064μm, 7 nsec Q-switch Nd-YAG laser with 400 mJ/cm2 laser energy’s has been used to ablated high purity cupper target and deposited on the porous silicon substrates recorded and study the effect of rapid thermal annealing on the structural characteristics, morphological, electrical characteristics and properties of the solar cell. Results of AFM likelihood of improved absorption, thereby reducing the reflection compared with crystalline silicon surface. The results showed the characteristics of the solar cell and a clear improvement in the efficiency of the solar cell in the

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Publication Date
Tue Nov 21 2023
Journal Name
Mater Sci: Mater Electron
Pulsed laser deposition of nanostructured CeO2 antireflection coating for silicon solar cell
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Increasing the power conversion efficiency (PCE) of silicon solar cells by improving their junction properties or minimizing light reflection losses remains a major challenge. Extensive studies were carried out in order to develop an effective antireflection coating for monocrystalline solar cells. Here we report on the preparation of a nanostructured cerium oxide thin film by pulsed laser deposition (PLD) as an antireflection coating for silicon solar cell. The structural, optical, and electrical properties of a cerium oxide nanostructure film are investigated as a function of the number of laser pulses. The X-ray diffraction results reveal that the deposited cerium oxide films are crystalline in nature and have a cubic fluorite. The field

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Publication Date
Wed Dec 20 2017
Journal Name
Materials Science-poland
Preparation and electrical properties of polyimide/carbon nanotubes composites
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Abstract<p>Polyimide/MWCNTs nanocomposites have been fabricated by solution mixing process. In the present study, we have investigated electrical conductivity and dielectric properties of PI/MWCNT nanocomposites in frequency range of 1 kHz to 100 kHz at different MWCNTs concentrations from 0 wt.% to 15 wt.%. It has been observed that the electrical conductivity and dielectric constants are enhanced significantly by several orders of magnitude up to 15 wt.% of MWCNTs content. The electrical conductivity increases as the frequency is increased, which can be attributed to high dislocation density near the interface. The rapid increase in the dielectric constant at a high MWCNTs content can be explained by the form</p> ... Show More
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Publication Date
Wed Dec 30 2009
Journal Name
Iraqi Journal Of Physics
Preparation and properties of Nanostructure Zinc Oxide Thin Films
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Zinc Oxide (ZnO) is probably the most typical II-VI
semiconductor, which exhibits a wide range of nanostructures. In
this paper, polycrystalline ZnO thin films were prepared by chemical
spray pyrolysis technique, the films were deposited onto glass
substrate at 400 °C by using aqueous zinc chloride as a spray
solution of molar concentration of 0.1 M/L.
The crystallographic structure of the prepared film was analyzed
using X-ray diffraction; the result shows that the film was
polycrystalline, the grain size which was calculated at (002) was
27.9 nm. The Hall measurement of the film studied from the
electrical measurements show that the film was n-type. The optical
properties of the film were studied using

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Publication Date
Sat Sep 01 2018
Journal Name
International Science And Engineering Congress Book
Preparation platinum Nano catalysts for Fabricating membranes fuel cell
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