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Fabrication of Doped BaTiO3 by Coprecipitation Method
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J. Korean Ceram. Soc.. 1988;25(4):315

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Erratum: Fabrication of Ca, Zr doped BaTiO3 ferroelectric nanofibers by electrospinning
physica status solidi (c). 2012;9(7):n/a-n/a   Crossref logo
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Fabrication of Ca, Zr doped BaTiO3 ferroelectric nanofibers by electrospinning
physica status solidi (c). 2012;9(7):1574-1576   Crossref logo
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Fabrication and electrical investigations of Pb-doped BaTiO3 ceramics
Materials Chemistry and Physics. 2017;193:42-49   Crossref logo
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WITHDRAWN: The fabrication of W–20%Cu composite powder using coprecipitation method
Journal of Alloys and Compounds. 2007;   Crossref logo
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Preparation and superconducting properties of Zn doped LSCO samples synthesized by chelating-coprecipitation method
Physica C: Superconductivity. 2004;403(4):252-256   Crossref logo
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Thermoelectric properties of La-doped SrPbO3 ceramics prepared by coprecipitation method
Materials Letters. 2004;58(27-28):3536-3539   Crossref logo
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Upconversion in Ho3+-doped YbF3 particle prepared by coprecipitation method
Applied Physics B. 2008;93(4):801-807   Crossref logo
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WITHDRAWN: Synthesis and photoluminescence characterization of Ti-doped MgO prepared by the coprecipitation method
Journal of Luminescence. 2007;   Crossref logo
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Spectroscopic studies on Zn-doped CdS nanopowders prepared by simple coprecipitation method
Journal of Materials Science. 2011;47(4):1964-1971   Crossref logo
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Synthesis of nanocomposite of franklinite (Fe2O4Zn) doped zincite(ZnO) using wet chemical coprecipitation method and rietveld refinement
Journal of Physics: Conference Series. 2020;1706:012013   Crossref logo
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