No. 20051 Deposited with http://cryst.instr.yamaguchi-u.ac.jp/20051

Journal: Journal of the Physical Society of Japan, Vol.74, No.10, pp.2748-2753

Title: Structural Determination of Atomic Substitution Ratio in (K1-xRbx)2SeO4 Mixed Crystal System

Authors: Shinsuke SAWAE, Terumi NAKASHIMA, Hirotake SHIGEMATSU, Hironobu KASANO and *Hiroyuki MASHIYAMA
Affiliation: Faculty of Science, Yamaguchi University, Yamaguchi 753-8512, Japan

(Published October 2005)

Abstract:
In order to explain why Rb2SeO4 remains in normal phase down to 0K while K2SeO4 transforms into the modulated phase at finite temperature, crystal structures of the mixed system have been refined at room temperature by X-ray single crystal analysis. Rb ion can be substituted for K ion with keeping the macroscopic symmetry of space group Pnam. Larger size of Rb ion occupies preferentially site 1, while smaller K ion prefers site 2. Here the atomic distance between an alkali ion and oxygen atoms is longer at site 1 than at site 2. The mean substitution ratio coincides with that from chemical analysis, however, the crystallographic structure analysis is only one method to determine the ratios at each site separately. A sublattice model is discussed to interpret the ion replacing effect on the phonon dispersion relation of the mixed crystal system. The hardening of the soft mode branch can be predicted by the change of interactions between the SeO4 tetrahedrons if the alkali ions are replaced.

Keywords: potassium selenate, rubidium selenate, mixed crystal, substitution ratio, structure analysis, phase transition, sublattice model, soft phonon dispersion
* Corresponding author

DEPOSITED DATA
list file (text 29KB) for nominal 50% mixed crystal

Top page