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JOURNALS // Fizika Tverdogo Tela // Archive

Fizika Tverdogo Tela, 2021 Volume 63, Issue 10, Pages 1485–1495 (Mi ftt7982)

This article is cited in 6 papers

Dielectrics

Crystallophysical model of ion transport in single-crystal Ba$_{1-x}$La$_{x}$F$_{2+x}$ and Ca$_{1-x}$Y$_{x}$F$_{2+x}$ superionic conductors

N. I. Sorokin, D. N. Karimov

Shubnikov Institute of Crystallography, Federal Scientific Research Centre "Crystallography and Photonics", Russian Academy of Sciences, Moscow, Russia

Abstract: A crystallophysical model of ion transport is proposed based on the electrical and structural data for Ba$_{1-x}$La$_{x}$F$_{2+x}$ and Ca$_{1-x}$Y$_{x}$F$_{2+x}$ superionic conductors (sp. gr. $Fm\bar3m$), in which charge carriers are mobile interstitial F$_{mob}^-$ ions formed as a result of heterovalent substitutions of [$M_8R_6$F$_{69}$] structural clusters ($R$=La or Y) for [$M_{14}$F$_{64}$] fluorite fragments ($M$ = Ca or Ba). Single crystals of Ca$_{1-x}$Y$_{x}$F$_{2+x}$ (0.02 $\le x\le$ 0.16) and Ba$_{1-x}$La$_{x}$F$_{2+x}$ ($x=0.31$) solid solutions are prepared using directional solidification. Mobilities of ion carriers in Ba$_{0.69}$La$_{0.31}$F$_{2.31}$, Ca$_{0.84}$Y$_{0.16}$F$_{2.16}$, Pb$_{0.67}$Cd$_{0.33}$F$_{2}$ and Pb$_{0.9}$Sc$_{0.1}$F$_{2.1}$ isostructural superionic conductors are compared. Ba$_{1-x}$La$_{x}$F$_{2+x}$ and Ca$_{1-x}$Y$_{x}$F$_{2+x}$ crystals with improved conductometric and mechanical characteristics are promising for replacement of conventional electrolyte CaF$_{2}$ in galvanic cells for thermodynamic studies of chemical compounds.

Keywords: inorganic fluorides, superionic conductivity, crystal growth, fluorite structure, defects, charge carriers, ion hopping frequency.

Received: 23.04.2021
Revised: 21.06.2021
Accepted: 22.06.2021

DOI: 10.21883/FTT.2021.10.51477.096


 English version:
Physics of the Solid State, 2021, 63:12, 1821–1832

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© Steklov Math. Inst. of RAS, 2025