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Mechanochemically driven amorphization of nanostructurized arsenicals, the case of β-As<sub>4</sub>S<sub>4</sub>.
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- Journal of Materials Science, 2018, v. 53, n. 19, p. 13464, doi. 10.1007/s10853-018-2404-3
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Cations size mismatch versus bonding characteristics: synthesis, structure and oxygen ion conducting properties of pyrochlore-type lanthanide hafnates.
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- Journal of Materials Science, 2018, v. 53, n. 19, p. 13513, doi. 10.1007/s10853-018-2402-5
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F anion dynamics in cation-mixed nanocrystalline LaF<sub>3</sub>: SrF<sub>2</sub>.
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- Journal of Materials Science, 2018, v. 53, n. 19, p. 13669, doi. 10.1007/s10853-018-2361-x
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Increase in the Fluorine-Ion Conductivity of Single Crystals of Tysonite-type CeF<sub>3</sub> Superionic Conductor by Substituting Polarized Cd<sup>2+</sup> Ions for Ce<sup>3+</sup> Ions.
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- Crystallography Reports, 2018, v. 63, n. 5, p. 769, doi. 10.1134/S1063774518030288
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Correlation between the Molecular Refractions of Crystals and the Ionic Radii of the Cations in the Rare-Earth Trifluoride Homologous Series.
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- Inorganic Materials, 2018, v. 54, n. 3, p. 268, doi. 10.1134/S0020168518030159
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Defect Structures of La<sub>1 - y</sub>Sr<sub>y</sub>F<sub>3 - y</sub>, La<sub>1 - y</sub>BayF<sub>3 - y</sub>, and Nd<sub>1 - y</sub>Ca<sub>y</sub>F<sub>3 - y</sub> (y = 0.05, 0.10) Nonstoichiometric Tysonite Phases.
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- Crystallography Reports, 2018, v. 63, n. 1, p. 45, doi. 10.1134/S1063774518010042
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Role of Ca in the change in the structure type and the fluoride-ion conductivity in crystals upon transition from β-ErF to ErCaF.
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- Crystallography Reports, 2015, v. 60, n. 1, p. 30, doi. 10.1134/S106377451501006X
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Optimization of single crystals of solid electrolytes with tysonite-type structure (LaF) for conductivity at 293 K: 2. Nonstoichiometric phases R MF ( R = La-Lu, Y; M = Sr, Ba).
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- Crystallography Reports, 2015, v. 60, n. 1, p. 123, doi. 10.1134/S106377451501023X
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Ordering of tysonite structure in an as-grown ErCaF crystal and in a component of annealed two-phase crystal of the ErCaF composition.
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- Crystallography Reports, 2014, v. 59, n. 4, p. 504, doi. 10.1134/S1063774514030055
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293-K conductivity optimization for single crystals of solid electrolytes with tysonite structure (LaF): I. Nonstoichiometric phases RCaF ( R = La-Lu, Y).
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- Crystallography Reports, 2014, v. 59, n. 4, p. 550, doi. 10.1134/S1063774514040191
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Dependences of the density of <i>M</i><sub>1−x</sub><i>R</i><sub>x</sub>F<sub>2 + x</sub> and <i>R</i><sub>1−y</sub><i>M</i><sub>y</sub>F<sub>3−y</sub> single crystals (<i>M</i> = Ca, Sr, Ba, Cd, Pb; <i>R</i> means rare earth elements) on composition.
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- Crystallography Reports, 2013, v. 58, n. 6, p. 948, doi. 10.1134/S1063774513060217
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Ionic conductivity of the phases of five types formed in the BaF-GdF system.
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- Crystallography Reports, 2012, v. 57, n. 4, p. 555, doi. 10.1134/S1063774512030200
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Nonstoichiometry in inorganic fluorides: I. Nonstoichiometry in MF- RF ( m < n ≤ 4) systems.
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- Crystallography Reports, 2012, v. 57, n. 3, p. 434, doi. 10.1134/S1063774512030194
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Anion disorder in LnF<sub>3</sub> (Ln = La, Ce, Pr) crystals.
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- Inorganic Materials, 2010, v. 46, n. 6, p. 668, doi. 10.1134/S002016851006018X
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Mechanochemical synthesis of nonstoichiometric nanocrystals La<sub>1 − y </sub>Ca<sub> y </sub>F<sub>3 − y </sub> with a tysonite structure and nanoceramic materials from CaF<sub>2</sub> and LaF<sub>3</sub> crystals.
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- Crystallography Reports, 2008, v. 53, n. 5, p. 868, doi. 10.1134/S1063774508050234
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Growth of R <sub>1 − y </sub>Sr<sub> y </sub>F<sub>3 − y </sub> crystals with rare earth elements of the cerium subgroup ( R = La, Ce, Pr, or Nd; 0 ≤ y ≤ 0.16) and the dependence of their density and optical characteristics on composition
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- Crystallography Reports, 2006, v. 51, n. 5, p. 895, doi. 10.1134/S106377450605021X
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Congruently Melting Compositions in the Series of Solid Solutions R[sub 1 – x]Sr[sub x]F[sub 3 – x](R = La – Nd, 0 ≤ x ≤ 0.15) with Tysonite Structure (Refinement by Directional Crystallization).
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- Crystallography Reports, 2003, v. 48, n. 5, p. 878, doi. 10.1134/1.1612609
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