Ni. Sorokin et al., Superionic conductivity of the heterovalent solid solutions R1-xMxF3-x (R = REE, M = Ca, Ba) with tysonite-type structure, PHYS SOL ST, 41(4), 1999, pp. 573-575
The fluorine-ion conductivity of anion-deficient solid solutions R1-xCaxF3-
x and R1-xBaxF3-x having the tysonite (LaF3) structure was investigated by
the impedance spectroscopy method. R1-xCaxF3-x (R=La, Pr, Nd, Sm, Gd, Tb, D
y, Ho) and R1-x BaxF3-x (R=La, Pr, Nd) single crystals were grown from the
melt by the Bridgman-Stockbarger method. The electrophysical measurements w
ere performed in the frequency range 5-5X10(5) and temperature range 300-70
0 K. The temperature dependences of the electrical conductivity for the cry
stals studied is determined by the migration of fluorine anions along vario
us structural positions. It is shown that, from the standpoint of increasin
g the conductivity of tysonite matrices RF3 (R=La, Pr, Nd), doping by CaF2
and BaF2 is less promising than SrF2. (C) 1999 American Institute of Physic
s. [S1063-7834(99)01504-X].