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First-principles calculations of structural, electronic, and optical properties for Ni-doped Sb2S3

Radzwan, Afiq and Lawal, Abdullahi and Shaari, Amiruddin and Chiromawa, Idris Muhammad and Ahams, Summanuwa Timothy and Ahmed, Rashid (2020) First-principles calculations of structural, electronic, and optical properties for Ni-doped Sb2S3. Computational Condensed Matter, 24 . e00477-e00477. ISSN 2352-2143

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Official URL: http://dx.doi.org/10.1016/j.cocom.2020.e00477

Abstract

Antimony sulphide (Sb2S3) is a potential candidate for alternative material in solar cell application. The structural, electronic, and optical properties of Ni doped Sb2S3 were calculated using full potential linear augmented plane wave (FP-LAPW) based on popular density-functional theory (DFT). The equilibrium lattice parameters have been calculated using Perdew–Burke–Ernzerhof (PBE) generalized gradient approximation (PBE-GGA). The band structure and density of state for Ni-doped Sb2S3 have been determined using Tran Blaha modified Becke-Johnson (TB-mBJ) potential. Our results indicate that Ni doped Sb2S3 has lower band gap energy compare to pure-Sb2S3. The optical properties of Ni-doped Sb2S3 such as absorption coefficient, reflectivity, refractive index, energy-loss function and extinction coefficient are presented. The results demonstrate that Ni-doped Sb2S3 has higher optical absorption coefficient in the visible region than pure-Sb2S3 which is good for optoelectronic applications.

Item Type:Article
Uncontrolled Keywords:Electronic structure, Optical properties
Subjects:Q Science > QC Physics
Divisions:Science
ID Code:90836
Deposited By: Widya Wahid
Deposited On:31 May 2021 13:21
Last Modified:31 May 2021 13:21

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