Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1626770 | Journal of Alloys and Compounds | 2006 | 12 Pages |
Abstract
Tetrahedron coordinated sphalerite quaternary systems of type A1âxBxYyZ1ây consist exclusively of binary and ternary elemental tetrahedra, 4 of the first and 4 of the latter, each 1 with 3 configurations, i.e., a total of 16 elemental tetrahedron configurations. These configurations cannot contain all four constituent atoms simultaneously in the same elemental tetrahedron; as a consequence we can consider each ternary tetrahedron composition as diluted in the quaternary compound. Thus, A1âxBxYyZ1ây extended X-ray absorption fine structure (EXAFS) data can be treated by using the strained tetrahedron model which, originally developed to deal with ternary systems, has already exhibited excellent agreement with numerous experimental data. To determine ion site occupation preferences of quaternary systems, we applied this model to our EXAFS data for Cd1âxMnxSeyTe1ây and to GaxIn1âxAsySb1ây data available in the literature, and compared them to those derived from ternary data for Cd1âxMnxTe and GaxIn1âxAs. In both sets, as the ternary is diluted in the quaternary system, a drift of the preference values of the pure ternary is observed. The present analysis of experimental reflectivity far-infrared (FIR) phonon spectra of quaternary Cd1âxMnxSeyTe1ây crystals confirms the model predictions and leads to an interpretation of the experimental data for A1âxBxYyZ1ây quaternary systems.
Related Topics
Physical Sciences and Engineering
Materials Science
Metals and Alloys
Authors
B.V. Robouch, A. Kisiel, A. Marcelli, M. Cestelli Guidi, M. Piccinini, E. Burattini, A. Mycielski,