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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 Dec 01 2010
Journal Name
Iraqi Journal Of Physics
Current–voltage and capacitance-voltage characteristics of Se/Si heterojunction prepared by DC planar magnetron sputtering technique
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In this work, the effect of annealing temperature on the electrical properties are studied of p-Se/ n-Si solar cell, which p-Se are deposit by DC planar magnetron sputtering technique on crystal silicon. The chamber was pumped down to 2×10−5 mbar before admitting the gas in. The gas was Ar. The sputtering pressure varied within the range of 4x10-1 - 8x10-2mbar by adjusting the pumping speed through the opening control of throttle valve. The electrical properties are included the C-V and I-V measurements. From C-V measurements, the Vbi are calculated while from I-V measurements, the efficiency of solar cell is calculated.

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Publication Date
Wed Jan 24 2018
Journal Name
The Journal Of Physical Chemistry C
Novel Approach for Fabricating Transparent and Conducting SWCNTs/ITO Thin Films for Optoelectronic Applications
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Publication Date
Tue Jun 23 2015
Journal Name
Iraqi Journal Of Market Research And Consumer Protection
Preparation Gelatin from Chicken Skin and Study its Functional and sensory Properties.: Preparation Gelatin from Chicken Skin and Study its Functional and sensory Properties.
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This study was carrid out to produce animal gelatin from chicken skin. Gelatin was prepared by the chemical method using HCl 2% and extraction at the temperature degree 70, 80, 90 c° and at the period of time 4, 6, 8 hours, calculated the yield, functional and sensory characteristics were measured at. The result also demonstrated that the produced gelatin have good functional properties in solubility, viscosity, gelling capacity, water absorpation, lipid binding, emulsification. viscosity was higher in gelatin prepared at 70 c° and period of extraction 8 hours and reached 1.0846 cp. Gelatin prepared were featured by highe gelling capacity at 1% for all extraction time periods. The produced gelatin was characterized by good sensory qual

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Publication Date
Tue May 01 2018
Journal Name
Journal Of Physics: Conference Series
Feasibility Study of a Solar Flat Plate Collector for Domestic and Commercial Applications under Iraq Climate
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Publication Date
Sat Oct 12 2019
Journal Name
Journal Of Engineering And Applied Sciences
Characterization of (CIGS)/(CdS) Hetrojunction for Solar Cell
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The CIGS/CdS p-n junction thin films were fabricated and deposited at room temperature with rate of deposition 5, and 6 nm secG1 , on ITO glass substrates with 1mm thickness by thermal evaporation technique at high vacuum pressure 2×10G5 mbar, with area of 1 cm2 and Aluminum electrode as back contact. The thickness of absorber layer (CIGS) was 1 µm while the thickness of the window layer CdS film was 300 nm. The X-ray Diffraction results have shown that all thin films were polycrystalline with orientation of 112 and 211 for CIGS thin films and 111 for CdS films. The direct energy gaps for CIGS and CdS thin films were 1.85 and 2.4 eV, respectively. Atomic Force Microscopy measurement proves that both films CIGS and CdS films have nanostru

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Publication Date
Mon Oct 01 2012
Journal Name
Iraqi Journal Of Physics
Ab–Initio large unit cell calculations of the electronic structure of Si and Ge nanocrystals
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Ab – initio restricted Hartree - Fock method within the framework of large unit cell (LUC) formalism is used to investigate the electronic structure of Si and Ge nanocrystals. The surface and core properties are investigated. A large unit cell of 8 atoms is used in the present analysis. Cohesive energy, energy gap, conduction and valence band widths are obtained from the electronic structure calculations. The results are compared with available experimental data and theoretical results of other investigators. The calculated lattice constant is found to be slightly larger than the corresponding experimental value because we use only 8 atoms and we compared the results with that of the bulk crystals, nanoclusters are expected to have str

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Publication Date
Mon Mar 29 2021
Journal Name
Journal Of Engineering
Extracting Four Solar Model Electrical Parameters of Mono-Crystalline Silicon (mc-Si) and Thin Film (CIGS) Solar Modules using Different Methods
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Experimental measurements were done for characterizing current-voltage and power-voltage of two types of photovoltaic (PV) solar modules; monocrystalline silicon (mc-Si) and copper indium gallium di-selenide (CIGS). The conversion efficiency depends on many factors, such as irradiation and temperature. The assembling measures as a rule cause contrast in electrical boundaries, even in cells of a similar kind. Additionally, if the misfortunes because of cell associations in a module are considered, it is hard to track down two indistinguishable photovoltaic modules. This way, just the I-V, and P-V bends' trial estimation permit knowing the electrical boundaries of a photovoltaic gadget with accuracy. This measure

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Publication Date
Fri Mar 01 2024
Journal Name
Baghdad Science Journal
Study the Structural Properties of Porous Silicon and their Applications as Thermal Sensors
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The photo-electrochemical etching (PECE) method has been utilized to create pSi samples on n-type silicon wafers (Si). Using the etching time 12 and 22 min while maintaining the other parameters 10 mA/cm2 current density and HF acid at 75% concentration.. The capacitance and resistance variation were studied as the temperature increased and decreased for prepared samples at frequencies 10 and 20 kHz. Using scanning electron microscopy (SEM), the bore width, depth, and porosity % were validated. The formation of porous silicon was confirmed by x-ray diffraction (XRD) patterns, the crystal size was decreased, and photoluminescence (PL) spectra revealed that the emission peaks were centered at 2q of 28.5619° and 28.7644° for et

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Publication Date
Wed May 01 2019
Journal Name
Solid State Phenomena
Preparation and Study of the Mechanical Properties of Unsaturated Polyester Resin/Graphene Nanocomposite
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Nanocomposite was prepared using unsaturated polyester (UP) resin as a matrix and graphene nanoparticles as a reinforcement material in six percentage weights (0, 0.1, 0.2, 0.3, 1 and 1.5%). Mechanical, calorimetric and thermal studies were performed on the (UP) resin/graphene nanocomposite. All tests showed a clear improvement of all mechanical properties examined (hardness, flexural strength (F.S), impact strength (I.S) and tensile strength (T.S)) with increasing graphene percentage. In addition, the temperature of glass transition and thermal conductivity of this composite increased with increasing graphene content.

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Publication Date
Wed May 01 2024
Journal Name
Journal Of Physics: Conference Series
Effect of Sulfur on Characterization of AgInSe<sub>1.8</sub>S<sub>0.2</sub> Thin Film and n-AgInSe<sub>1.8</sub>S<sub>0.2</sub> / p-Si Solar Cell
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Abstract Ternary Silver Indium selenide Sulfur AgInSe1.8S0.2 in pure form and with a 0.2 ratio of Sulfur were fabricated via thermal evaporation under vacuum 3*10-6 torr on glasses substrates with a thickness of (550) nm. These films were investigated to understand their structural, optical, and Hall Characteristics. X-ray diffraction analysis was employed to examine the impact of varying Sulfur ratios on the structural properties. The results revealed that the AgInSe1.8S0.2 thin films in their pure form and with a 0.2 Sulfur ratio, both at room temperature and after annealing at 500 K, exhibited a polycrystalline nature with a tetragonal structure and a predominant orientation along the (112) plane, indicating an enhanced de

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