Growth of \({\text{N}}{{{\text{d}}}_{{{\text{1}}\; - \;y}}}{\text{Eu}}_{y}^{{{\text{2}} + }}{{{\text{F}}}_{{{\text{3}}\; - \;y}}}\) Single Crystals with Tysonite-Type (LaF3) Structure and Investigation of the Concentration Dependence of Some Their Properties


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Nd1 – yEuyF3 – y crystals (y is the molar fraction of EuF2; 0 ≤ y ≤ 0.15) with a tysonite (LaF3) structure have been grown from melt by the Bridgman technique; their optical transmission spectra and dependences of the lattice parameters, density, refractive index, and fluorine-ion conductivity on the Eu2+ content have been investigated. Nd1 – yEuyF3 – y crystals are single-phase; they are crystallized into the trigonal system (sp. gr. \(P\bar {3}c1\), Z = 6) at y ≤ 0.12, whereas at y = 0.15 one can observe stabilization of a high-temperature tysonite α-phase (sp. gr. P63/mmc, Z = 2). The crystals under study are transparent in the IR range up to 12 µm. The EuF2 doping into the NdF3 matrix leads to a monotonic decrease in the density and refractive index. The dependence of the conductivity on the composition σdc(y) has a nonmonotonic character. The Nd0.97Eu0.03F2.97 crystal has the maximum σdc value at 293 K (2.0 × 10–4 S/cm). Its charge-carrier concentration is nmob = 5.8 × 1020 cm–3 and the carrier mobility is μmob = 2.2 × 10–6 cm2/(V s) (at 293 K). The σdc value for Nd0.97Eu0.03F2.97 is smaller (by a factor of 2.5) than that for Ce0.97Sr0.03F2.97, which has the best electrolytic characteristics among R1 – yMyF3 – y solid electrolytes (M = Ca, Sr, or Ba).

Sobre autores

D. Karimov

Shubnikov Institute of Crystallography, Federal Scientific Research Centre “Crystallography and Photonics,”
Russian Academy of Sciences

Autor responsável pela correspondência
Email: dnkarimov@gmail.com
Rússia, Moscow, 119333

N. Sorokin

Shubnikov Institute of Crystallography, Federal Scientific Research Centre “Crystallography and Photonics,”
Russian Academy of Sciences

Autor responsável pela correspondência
Email: nsorokin1@yandex.ru
Rússia, Moscow, 119333

V. Sokolov

Institute of Photon Technologies, Federal Scientific Research Centre “Crystallography and Photonics,”
Russian Academy of Sciences

Email: nsorokin1@yandex.ru
Rússia, Moscow, 119333

B. Sobolev

Shubnikov Institute of Crystallography, Federal Scientific Research Centre “Crystallography and Photonics,”
Russian Academy of Sciences

Email: nsorokin1@yandex.ru
Rússia, Moscow, 119333


Declaração de direitos autorais © Pleiades Publishing, Inc., 2019

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