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Ab initio study of the structure, elastic, and electronic properties of Ti3(Al1−nSin)C2 layered ternary compounds

Ahams, S. T. and Shaari, Amiruddin and Ahmed, R. and Abdul Pattah, N. F. and Idris, M. C. and U. Haq, B. (2021) Ab initio study of the structure, elastic, and electronic properties of Ti3(Al1−nSin)C2 layered ternary compounds. Scientific Reports, 11 (1). pp. 1-8. ISSN 2045-2322

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Official URL: http://dx.doi.org/10.1038/s41598-021-84466-5

Abstract

The MAX phase materials such as layered ternary carbides that simultaneously exhibit characteristics of metallic and ceramic materials have received substantial interest in recent years. Here, we present a systematic investigation of the electronic, structural stabilities, and elastic properties of Ti-3(Al1-nSin)C-2 (n=0,1) MAX phase materials using the ab initio method via a plane-wave pseudopotential approach within generalized-gradient-approximations. The computed electronic band structures and projected density of states show that both Ti3SiC2 and Ti3AlC2 are metallic materials with a high density of states at the Fermi level emanating mainly from Ti-3d. Using the calculated elastic constants, the mechanical stability of the compounds was confirmed following the Born stability criteria for hexagonal structures. The Cauchy pressure and the Pugh's ratio values establish the brittle nature of the Ti3SiC2 and Ti3AlC2 MAX phase materials. Due to their intriguing physical properties, these materials are expected to be suitable for applications such as thermal shock refractories and electrical contact coatings.

Item Type:Article
Uncontrolled Keywords:elastic properties, electronic
Subjects:Q Science > QC Physics
Divisions:Science
ID Code:94149
Deposited By: Yanti Mohd Shah
Deposited On:28 Feb 2022 13:32
Last Modified:28 Feb 2022 13:32

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