Advances in Materials Physics and Chemistry

Advances in Materials Physics and Chemistry

ISSN Print: 2162-531X
ISSN Online: 2162-5328
www.scirp.org/journal/ampc
E-mail: ampc@scirp.org
"Influence of Sn Low Doping on the Morphological, Structural and Optical Properties of ZnO Films Deposited by Sol Gel Dip-Coating"
written by Chewki Zegadi, Khalil Abdelkebir, Denis Chaumont, Mohamed Adnane, Saad Hamzaoui,
published by Advances in Materials Physics and Chemistry, Vol.4 No.5, 2014
has been cited by the following article(s):
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[4] Impact of the meso-PSi substrate on ZnO thin films deposited by spray pyrolysis technique for UV photodetectors
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[5] Growth and Characterization of ZnO Nanostructures: Materials for CO and Ethanol Sensing
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[6] Role of ZnO content on the structural, morphology and optical properties of (NiO) 1-x (ZnO) x thin films prepared by pulsed laser deposition technique
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[7] Association of structure and modulated optoelectronic property in Sb doped Zn2SnO4 nanostructured films for transparent electrodes
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[8] Structure, optical and electrical properties of sol-gel derived Zn1. 5+ xSn1. 5-xO4 nanostructured films for optoelectronic applications
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[9] Enhancement of Mn 2+ contributions on improvement of electrical characteristics for sol–gel deposited Zn 2− x Mn x SnO 4 nanostructured films
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[10] Bandgap Tuning and Blue-Green Band Emissions of Sol–Gel Synthesized ZnO Films by High Cu Doping
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[11] Sol-gel synthesized spin coated GO: ZnO composite thin films: optical, structural and electrical studies
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[12] Effect of CuO on the photoluminescence quenching and photocatalytic activity of ZnO multilayered thin films prepared by sol-gel spin coating technique
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[13] Fabrication and Characterization of Highly Textured Thin Films of Undoped and Ag-Doped ZnO.
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[14] Structural, Morphological, Optical, Electrical and Agricultural Properties of Solvent/ZnO Nanoparticles in the Photodegradation of DR-23 Dye
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[15] Surface Stoichiometry Analysis by AES, EELS Spectroscopy and AFM Microscopy in UHV Atmosphere of SnO2 Thin Film
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[16] Optical, electrical and magnetic properties of fiber structure Zn0. 99Mn0. 01O films prepared by spray pyrolysis
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[17] Defect induced white-light emission from Mn–doped ZnO films and its magnetic properties
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[18] Gas Sensing Performance of Dip-Coated Indium-Doped ZnO Films
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[19] Tuning of energy gap, structural, FTIR and photoluminescence examination of Ni, Sn dual doped ZnO nanoparticles
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[20] Structural and morphological characterization of sol-gel ZnO: Ga films: Effect of annealing temperatures
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[21] Visible light photocatalytic degradation of Textile Azo dyes using Sn doped ZnO nanorods
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[22] ENHANCED PHOTOCATALYTIC PROPERTIES OF Sn-DOPED ZnO NANOPARTICLES BY FLAME SPRAY PYROLYSIS UNDER UV LIGHT IRRADIATION
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[24] Mössbauer spectroscopy of 119Sn probe cations on the surfaces of ZnO crystallites: Valence state, local environment, and hyperfine interactions of tin additives
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[25] Ethanol gas sensor based upon ZnO nanoparticles prepared by different techniques
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[26] Optical Properties of Nano–Structured ZnO: Sn Powders Prepared in a Micro Drop Fluidized Reactor
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[27] Varied Sensing characteristics of In-doped ZnO Films Prepared by Sol Gel Spin Coating Technique
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[28] Sn-doped ZnO Nanopetal networks for Efficient Photocatalytic Degradation of dye and Gas Sensing Applications
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[29] Optical Analysis of ZnO Thin Films by SILAR Method
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[30] EFFECT OF HYDROGEN ANNEALING ON THE LOCATION SITES OF TIN DOPANT IONS IN THE HEXAGONAL ZnO CRYSTAL STRUCTURE
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[31] Structural evolution of alkaline earth metal stannates MSnO 3 (M= Ca, Sr, and Ba) photocatalysts for hydrogen production
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[32] Influence of iron doping on morphological, structural and optical properties of zinc oxide thin films prepared by dip-coating method
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[33] Impurity compensation effect induced by tin valence change in α-Ga1. 4Sn0. 6O3 thin films
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[34] Investigation of Structural, Morphological, Electronic and Optical Properties of Au Irradiated Ni Doped ZnO Thin Films prepared by Pulsed Laser Deposition
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[35] Effect of Annealing Temperature on Optical and Electrical Properties of Sol-Gel ZnO Thin Films
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[36] Impurity Compensation Effect Induced by Tin Valence Change in α-Ga1.4Sn0.6O3 Thin Films
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[37] Effects On Structural and Electro-Optical Properties of Iron Incorporation to p-Zinc Oxide (ZnO) Thin Films Deposited by Dip-coating Process
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[38] XPS and DFT study of Sn incorporation into ZnO and TiO2 host matrices by pulsed ion implantation
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