Search Results - "Begam, M. Rigana"
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Investigation studies of pure and molybdenum doped zinc oxide thin films deposited by spray pyrolysis technique for transparent conductive oxides applications
Published in Optical and quantum electronics (06-08-2024)“…Pure and molybdenum doped zinc oxide thin films, with different Mo doping concentrations, have been deposited on cleaned glass substrate, at temperature 450 °C…”
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Enhanced mechanical strength and sustained drug release of gelatin/keratin scaffolds
Published in Materials letters (01-01-2017)“…Three dimensional natural polymer composites with highly interconnected pores of gelatin/keratin (GK) and gelatin/silk (GS) prepared by freeze-drying…”
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Structural, optical and magnetic properties of Cu doped CdSe powders prepared by solid state reaction method
Published in Journal of materials science. Materials in electronics (01-03-2016)“…Cu doped CdSe powders were synthesized by solid state reaction method and studied the effect of Cu doping concentration on structural, optical and magnetic…”
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4
Room temperature ferromagnetism in Cd1−xCrxTe diluted magnetic semiconductor crystals
Published in Materials science in semiconductor processing (01-02-2014)“…Cd1−xCrxTe diluted magnetic semiconductor crystals were grown by vapor phase growth technique in the composition range of 0≤x≤0.05 and the effect of Cr doping…”
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Structural and Magnetic Properties of Ni Doped SnO2
Published in Advances in condensed matter physics (01-01-2014)“…Nickel (Ni) doped SnO2 powder samples were prepared using solid-state reaction with dopant concentrations in the range of 3 at.% to 15 at.%. The influence of…”
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Structural and Magnetic properties of Cr-diffused CdTe nanocrystalline thin films deposited by electron beam evaporation
Published in Applied physics. A, Materials science & processing (01-11-2014)“…Cr-diffused cadmium telluride (CdTe) thin films with different Cr content were prepared using electron beam evaporation method at a substrate temperature of…”
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Photosensitivity properties of Eu-doped SnS2 thin films deposited by cost-effective nebulizer spray pyrolysis technique
Published in Applied physics. A, Materials science & processing (01-04-2022)“…The current research explores the outcome of europium doping on the structure, morphology, electrical conductivity and optoelectronic characteristics of SnS 2…”
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Structural, Optical, and Magnetic Properties of Co Doped CdTe Alloy Powders Prepared by Solid-State Reaction Method
Published in Advances in condensed matter physics (01-01-2013)“…Co doped CdTe powder samples were prepared by solid-state reaction method. In the present work effect of Co doping on structural, optical, and magnetic…”
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9
Noticeable gas sensing properties of ZnO nano-crystallites using two-step preparation technique
Published in Applied physics. A, Materials science & processing (01-04-2023)“…ZnO thin films were made to grow on soda lime glass substrate through a two-step technique. The successive ionic layer adsorption and reaction method (SILAR)…”
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Structural, optical and magnetic properties of (In1−xNix)2O3 (0≤x≤0.09) powders synthesized by solid state reaction
Published in Materials science in semiconductor processing (01-02-2014)“…Nickel-doped indium oxide diluted magnetic semiconducting powders ((In1−xNix)2O3, x=0.00, 0.03, 0.05, 0.07 and 0.09) were synthesized by a simple solid state…”
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Structural, optical, and magnetic properties of Fe doped In2O3 powders
Published in Materials research bulletin (01-01-2015)“…[Display omitted] •Synthesis of Fe doped In2O3 powders using a solid state reaction.•Characterization of the samples using XRD, UV–vis-NIR, FT-IR, and VSM.•All…”
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Magnetic and superconductivity studies on (In1−xFex)2O3 thin films
Published in Journal of alloys and compounds (15-07-2015)“…•Fe doped In2O3 thin films deposited using electron beam evaporation technique.•Characterization of the samples using XRD, SEM, EDAX, AES, Raman spectroscopy,…”
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Room temperature ferromagnetism in (In1-xNix)2O3 thin films
Published in Physica. B, Condensed matter (01-06-2015)“…Polycrystalline (In1−xNix)2O3 thin films (x=0.00, 0.03, 0.05 and 0.07) were deposited on glass substrates by electron beam evaporation technique. The effect of…”
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Magnetic and superconductivity studies on (In sub(1-x)Fe sub(x)) sub(2)O sub(3) thin films
Published in Journal of alloys and compounds (15-07-2015)“…Magnetic, magnetoresistivity and superconductivity studies were carried out on (In sub(1-)xFe sub(x)) sub(2)O sub(3) (x = 0.00, 0.03, 0.05 and 0.07) thin films…”
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Room temperature ferromagnetism in (In sub(1-x)Ni sub(x)) sub(2)O sub(3) thin films
Published in Physica. B, Condensed matter (01-06-2015)“…Polycrystalline (In sub(1-x)Ni sub(x)) sub(2)O sub(3) thin films (x=0.00, 0.03, 0.05 and 0.07) were deposited on glass substrates by electron beam evaporation…”
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Room Temperature Ferromagnetism in Cu-Doped In 2O3 Thin Films
Published in Journal of superconductivity and novel magnetism (24-07-2015)“…The In 2−x Cu x O 3 (x = 0, 0.03, 0.05, and 0.07) thin films were deposited on a glass substrate under vacuum by electron beam evaporation technique. The…”
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Structural, optical, and magnetic properties of Fe doped In{sub 2}O{sub 3} powders
Published in Materials research bulletin (15-01-2015)“…Highlights: • Synthesis of Fe doped In{sub 2}O{sub 3} powders using a solid state reaction. • Characterization of the samples using XRD, UV–vis-NIR, FT-IR, and…”
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Physical Properties of Sn1−x Fe x O2 Powders Using Solid State Reaction
Published in Journal of superconductivity and novel magnetism (01-05-2014)Get full text
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Physical Properties of Sn1−xFexO2 Powders Using Solid State Reaction
Published in Journal of superconductivity and novel magnetism (2014)“…Iron-doped SnO 2 diluted magnetic semiconducting powders (Sn 1− x Fe x O 2 , x =0.00, 0.03, 0.05, 0.07, 0.10, and 0.15) were synthesized by a simple solid…”
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Structural and Magnetic Properties of Ni Doped S n O 2
Published in Advances in condensed matter physics (2014)“…Nickel (Ni) doped SnO 2 powder samples were prepared using solid-state reaction with dopant concentrations in the range of 3 at.% to 15 at.%. The influence of…”
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