Search Results - "Elena S. Buyanova"
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Bi26Mo10O69–based solid solution with nonmetal dopants: Synthesis and properties
Published in Solid state ionics (01-03-2019)“…A series of S- and P- doped Bi26Mo10O69 was synthesized by conventional solid state method and studied. Chemical analysis detected closeness of experimental…”
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Determination of Bi in complex oxide samples by atomic absorption spectrometry by using ordinary acetylene – air flame atomization
Published in Chimica Techno Acta (30-12-2020)“…In the present work the air/acetylene flame atomic absorption spectrometry was used for bismuth determination in complex oxides. Interference studies were…”
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3
Structure and microwave dielectric properties of Bi- and Ge-doped calcium molybdate
Published in Chimica Techno Acta (23-08-2022)“…The powders of Ca1–2xBi2xMo1–xGexO4 solid solutions weresynthesized by the conventional solid state method and investigated by X–ray powder diffraction and…”
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4
Synthesis and Properties of Vanadium Substituted Bismuth Tungstates with Fluorite-like Structure
Published in Chimica Techno Acta (05-08-2019)“…The samples of vanadium substituted bismuth tungstates with a cubic structure were obtained by solid state method. The unit cell volume of the compounds…”
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Morphological and microwave dielectric properties of Bi:SrMoO4 ceramic
Published in Journal of solid state chemistry (01-12-2022)“…The Bi:SrMoO4 ceramic samples were prepared from Sr1-1.5xBixØ0.5xMoO4 (x = 0.05–0.45) powders. Complex oxides with 0.05 = x ≤ 0.25 crystallize with SrMoO4-…”
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Structural, photocatalytic and electroconductive properties of bismuth-substituted CaMoO4
Published in Journal of solid state chemistry (01-11-2020)“…The Ca1−3xBi2xФxMoO4 system (0.025 ≤ x ≤ 0.30, where Ф represents cation vacancies) was synthesized and studied. The 0.025 = x ≤ 0.15 compositions show…”
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Comparative characteristic of Bi- and La- doped (Ca/Sr)MoO4 -based materials with a defect scheelite-type structure
Published in Chimica Techno Acta (01-12-2023)“…CaMoO4- and SrMoO4-based scheelite-type phases are noteworthy functional materials, whose properties strongly correlate with their structure. This work is…”
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