Increase in the Fluorine-Ion Conductivity of Single Crystals of Tysonite-type CeF3 Superionic Conductor by Substituting Polarized Cd2+ Ions for Ce3+ Ions


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Abstract

The fluorine-ion conductivity of single crystals with a tysonite (LaF3) structure with heterovalent isomorphic substitutions of highly polarizable Cd2+ cations with a 18-electron shell for rare earth ions Ce3+ have been studied for the first time. Ce0.995Cd0.005F2.995 single crystals have been grown from melt by the Bridgman technique in a fluorinating atmosphere. The fluorine-ion conductivity of single crystal is measured by impedance spectroscopy in the temperature range from 153 to 1073 K, where it increases by a factor of 109, approaching the value σdc = 5 × 10–2 S/cm at 1073 K. At T0 = 450 ± 20 K, the dependence σdc(T) is split into two portions with the ion-transport activation enthalpy ΔHσ = 0.39 ± 0.01 eV (T < T0) and ΔHσ = 0.23 ± 0.02 eV (T > T0). It is found that at T = 293 K the conductivity σdc = 3 × 10–5 S/cm of Ce0.995Cd0.005F2.995 crystal is higher by a factor of 10 than the conductivity of the tysonite matrix CeF3 and close to the σdc value for Ce0.995Sr0.005F2.995 crystal. This finding indicates a significant effect of the substitutions of Cd2+ ions for Ce3+ on the σdc value and the advantage of Cd2+ ions over Ca2+ and Ba2+ from the viewpoint of increasing σdc.

About the authors

N. I. Sorokin

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

Author for correspondence.
Email: nsorokin1@yandex.ru
Russian Federation, Moscow, 119333

D. N. Karimov

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

Email: nsorokin1@yandex.ru
Russian Federation, Moscow, 119333

B. P. Sobolev

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

Email: nsorokin1@yandex.ru
Russian Federation, Moscow, 119333

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