Аннотация:
A theory for forming Ir-atomic nanoclusters in a dielectric matrix of Na4Ir3O8 structure and spinel-like structures is suggested. The atomic order in the Na4Ir3O8 structure is investigated by group-theoretical methods of phase transition theory. The critical irreducible representation τ, generating appearance of enantiomorphic P 4132 (P 4332)-phases from high symmetry spinel-like phase with space group Fd3m, is six dimensional irreducible representation k10(τ1) (in Kovalev designation). Ir and Na atoms form an intriguing atom ordering, giving rise to a network of corner shared Ir triangles, called a hyperkagome lattice. It is shown that inside the hyperkagome lattice, there are closed metal contours of chemical bonds formed by Ir-clusters - decagons. Unusual physical properties of solid solutions on the basis of Na4Ir3O8 are expected. The existence of hyperkagome lattices in six types in ordered spinel structures is theoretically predicted.
The results of this work have been obtained with the support of the Ministry of Education and Science of the Russian Federation in the framework of the State tasks (Talanov V.M., project N 2983(9.14), (Talanov M.V., Federal program: state contract N 14.575.21.0007; theme Nos. 213.01-11/2014-21, 3.1246.2014/K, 213.01-2014/012-BG).
Поступила в редакцию: 07.01.2015 Исправленный вариант: 24.02.2015
Реферативные базы данных:
Тип публикации:
Статья
PACS:61.50.Ks; 36.40.-c
Язык публикации: английский
Образец цитирования:
M. V. Talanov, V. B. Shirokov, V. M. Talanov, “Atomic order and metallic nanoclusters in Na4Ir3O8”, Наносистемы: физика, химия, математика, 6:3 (2015), 442–450