Electronic structure, lattice dynamics and thermodynamic stability of paramelaconite Cu4O3

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TitreElectronic structure, lattice dynamics and thermodynamic stability of paramelaconite Cu4O3
Type de publicationJournal Article
Year of Publication2014
AuteursDebbichi L, de Lucas MCMarco, Krueger P
JournalMATERIALS CHEMISTRY AND PHYSICS
Volume148
Pagination293-298
Date PublishedNOV 14
Type of ArticleArticle
ISSN0254-0584
Mots-clésAb initio calculations, Band-structure, Lattice dynamics, Oxides, Phase equilibria
Résumé

An ab initio study of the electronic structure, lattice dynamic and thermodynamic properties of paramelaconite Cu4O3 is reported. The insulating, mixed-valence character of Cu4O3 is elucidated by analyzing the band structure and the spin-orbital symmetry of the Cu-3d hole states. Exchange coupling constants between Cu2+ ions are computed which confirm the frustrated antiferromagnetism of the spin lattice. The lattice dynamics is studied from first principles and main features of the vibrational spectrum are assigned to the different chemical species Cu+, Cu2+ and O. The thermodynamic stability of Cu4O3 is investigated by calculating the free energy of the decomposition reaction into CuO and Cu-2 Oas a function of temperature. The results agree with the available experimental data and indicate that the vibrational entropy plays an essential role for the decomposition reaction, which occurs at elevated temperatures. (C) 2014 Published by Elsevier B.V.

DOI10.1016/j.matchemphys.2014.07.046