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Elastic mechanical thermodynamic and thermoelectric properties of pristine and titanium doped MgSi: a density functional theory study.

作者信息

Sharma Pradeep Kumar, Kachhara Chetan, Laihnuna N, Kedia Sanjay

机构信息

Shyam Lal College, University of Delhi, Delhi 110032, India.

Kohima Science College, Jotsoma Kohima 797002 Nagaland, India.

出版信息

J Phys Condens Matter. 2024 Oct 18;37(2). doi: 10.1088/1361-648X/ad84a9.

Abstract

Herein, we report a systematic investigation of the effect of Titanium doping on the structural, elastic, mechanical, thermodynamic, and thermoelectric (TE) dynamics of MgSi Compounds using first-principle investigation. The present study has been carried out using the full potential linearized augmented plane wave method as implemented incode underexchange potentials. The investigations revealed that MgTiSi compounds have structural stability with cubic phase (symmetry) and possess degenerate semiconducting nature. The analysis of elastic constants revealed mechanical stability of the investigated compounds following Born criteria. Thermodynamic investigations have been carried out in the temperature range of 100-1500 K at zero pressure and the quantities like heat capacity, Debye temperature, Grüneisen constant, and thermal expansion coefficient have been critically analyzed. Lastly, the TE performance of MgTiSi compounds has been predicted by estimating the thermopower () and TE figure of merit () in the temperature range of 300-1500 K. The predicted value offor MgTiSi compound is 0.67 at 800 K for= 0.25 titanium content, suggesting materials promising application for TE energy harvesting and mechanical devices.

摘要

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