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First principles investigation of zb-TiSn: A promising narrow bandgap semiconductor

2025/05/25 by R, Sudeep, M, Sarojini, Koppolu, Uma Mahendra Kumar
#FOS: Physical sciences #Materials Science (cond-mat.mtrl-sci)

paper · doi:10.48550/arxiv.2505.18940

Abstract

We have investigated the structural stability of a binary compound TiSn in the zincblende symmetry. The phonon dispersion studies confirms that, TiSn with a nominal composition of 1:1 can exist in zincblende form. No imaginary frequencies are observed indicating the stable bonding nature of Ti-Sn. From the First principles calculations based on density functional theory, the resulting electronic band structure had revealed that zb-TiSn, is a narrow band gap semiconductor with an energy gap of 0.3 eV with GGA- PBE. The bonding nature is identified as polar covalent, determined from charge density difference plots and Bader charge analysis. Further more, the linear optical properties of zb-TiSn are derived from the Khon-Sham eigenvalues.

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