Search Results - "Songara, Sandhya"
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Improved photochromic properties of W6+ doped nanostructured TiO2 coatings
Published in Results in surfaces and interfaces (01-02-2024)“…During the strategic military operations, the deployment of objects viz. tanks, rescue shelters, bunkers etc. need to masquerade from enemy sensors. The…”
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Tuning of crystal phase structure in hydrated WO3 nanoparticles under wet chemical conditions and studies on their photochromic properties
Published in The Journal of physics and chemistry of solids (01-07-2012)“…Hydrated tungsten oxide nanoparticles have been synthesized using a simple wet chemical method while varying the concentration of HCl. XRD studies show that…”
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Effect of doping concentration and annealing temperature on luminescence properties of Y2O3:Eu3+ nanophosphor prepared by colloidal precipitation method
Published in Journal of luminescence (01-08-2012)“…Eu3+ doped Y2O3 nanophosphors have been synthesized using the simple colloidal precipitation method. Doping of Eu3+ ions in host yttria lattice has been…”
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Synthesis of core–shell iron nanoparticles from decomposition of Fe–Sn nanocomposite and studies on their microwave absorption properties
Published in Journal of nanoparticle research : an interdisciplinary forum for nanoscale science and technology (01-12-2012)“…Core–shell iron nanoparticles have been synthesized by pyrolysis of nanocomposite of oxides of iron–tin (Fe–Sn). The core–shell nanoparticles of phase pure…”
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Synthesis of Fe3O4@Y2O3:Eu3+ core–shell multifunctional nanoparticles and their magnetic and luminescence properties
Published in Optical materials (01-07-2013)“…[Display omitted] •Synthesis of multifunctional core–shell nanoparticles of magnetic Fe3O4 and luminescent shell of Y2O3:Eu3+.•Optimization of synthetic…”
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Synthesis of Fe3O42O3: Eu3+ core-shell multifunctional nanoparticles and their magnetic and luminescence properties
Published in Optical materials (01-07-2013)“…A simple wet chemical route has been employed to synthesize multifunctional core-shell nanoparticles of Fe3O42O3: Eu3+ showing an interesting combination of…”
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