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A. Erko

Publications and source records attributed to A. Erko.

2 recordsLinked to original sources

Local environment and oxidation state of Mn impurity in SrTiO3 determined from XAFS data

The local environment and oxidation state of Mn impurity in strontium titanate doped with 3% Mn were studied by X-ray absorption fine structure spectroscopy. The influence of the preparation conditions on the incorporation of the impurity into the $A$ and $B$ sites was studied. It was established that Mn ions substituting for Ti are in the Mn$^{4+}$ oxidation state and on-center. Mn ions substituting for Sr are in the Mn$^{2+}$ oxidation state, are off-center and displaced from the lattice sites by $\sim$0.32 Å. It was demonstrated that studies of the X-ray absorption near-edge structure can be used to determine the concentration ratio of Mn atoms located at the $A$ and $B$ sites.

cond-mat.mtrl-sci

Crystal structure, local structure, and defect structure of Pr-doped SrTiO$_3$

X-ray diffraction studies showed that the structure of (Sr$_{1-x}$Pr$_x$)TiO$_3$ solid solutions at 300 K changes from the cubic $Pm3m$ to the tetragonal $I4/mcm$ with increasing $x$. The analysis of XANES and EXAFS spectra of the solid solutions revealed that Pr ions are predominantly in the 3+ oxidation state, they substitute for Sr atoms and are on-center regardless of the preparation conditions. The weak dependence of the lattice parameter in (Sr$_{1-x}$Pr$_x$)TiO$_3$ on the Pr concentration was explained by the competition between the relaxation of the Sr--O bond length, which results from the difference in ionic radii of Sr and Pr ions, and the repulsion of positively charged Pr$^{3+}$ and Ti$^{4+}$ ions. It was shown that the most important defects in the crystals are charged Sr vacancies and SrO planar faults; praseodymium does not enter the Sr sites in the planar faults.

cond-mat.mtrl-sci