Theoretical study on the structural, electronic and physical properties of layered alkaline-earth-group-4 transition-metal nitrides AEMN2

Orisakwe, E., Fontaine, B., Gregory, D. H. , Gautier, R. and Halet, J.-F. (2014) Theoretical study on the structural, electronic and physical properties of layered alkaline-earth-group-4 transition-metal nitrides AEMN2. RSC Advances, 4(60), pp. 31981-31987. (doi: 10.1039/C4RA05395H)

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Publisher's URL: http://dx.doi.org/10.1039/C4RA05395H

Abstract

Thermodynamic, structural, and electronic properties of the layered ternary nitrides AEMN<sub>2</sub> (AE = alkaline-earth; M = group 4 transition metal) both with the KCoO<sub>2</sub> and α-NaFeO2 structure-types are examined within density-functional theory. The AE:M atomic (or ionic) radius ratio seems to be the most important criterion in determining one structural arrangement over the other. We find that the majority of compounds are more stable with the KCoO<sub>2</sub> structure-type where M is coordinated to five nitrogen atoms in a distorted square-based pyramidal geometry. Strong interactions occur in both arrangements not only between nitrogen and transition metal atoms, but also between nitrogen and alkaline-earth metal atoms within and between the layers. Calculations show that all the AEMN<sub>2</sub> compounds with the tetragonal structure-type KCoO<sub>2</sub> are semiconducting with band gaps of approximately 1 eV. However, small band gap conductor and even semi-metallic behavior are computed for compounds with the alternative hexagonal α-NaFeO<sub>2</sub> structure-type.

Item Type:Articles
Status:Published
Refereed:Yes
Glasgow Author(s) Enlighten ID:Gregory, Professor Duncan
Authors: Orisakwe, E., Fontaine, B., Gregory, D. H., Gautier, R., and Halet, J.-F.
College/School:College of Science and Engineering > School of Chemistry
Journal Name:RSC Advances
Publisher:Royal Society of Chemistry
ISSN:2046-2069

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