DFT insights on lead-free double perovskite A2(Ag/In)BrO6 (A=Ca, Sr, Ba) phase for optoelectronic applications

IF 3 3区 化学 Q3 CHEMISTRY, PHYSICAL
D.S. Jayalakshmi , V. Dharshini , Bhuvanesh Srinivasan , R. Gopalan , D. Hemanand
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引用次数: 0

Abstract

The first principle investigation on the structural, electronic, optical, thermal and thermoelectric properties of lead-free double perovskite A2(Ag/In)BrO6 (A=Ca, Sr, Ba) in the cubic phase has been performed using the Full Potential Linearized Augmented Plane Wave (FP-LAPW) method in the framework of DFT (Density Functional Theory). The computational structural properties shows the most stable structure in the phase group of Fm3m (225) for the proposed compounds A2(Ag/In)BrO6 (A=Ca, Sr, Ba). Modified Becke–Johnson (mBJ) potential embedded in the WIEN2K code is used to calculate the band structure. The obtained band structure plots and Density of State histograms depicts that the proposed materials are conductor or slightly the stage ahead from semiconductor whereas the parent material namely Ba2NaBrO6 is a direct band gap semiconductor. The total and partial density of states shows that the electron contribution towards the Fermi region is predominant due to O-p orbitals, Ag-d orbitals and In-p orbital. There is a negligible contribution arising from the alkaline earth metals namely Ba, Sr and Ca. In view of optical properties analysis, the parameters such as refractive index, dielectric function, reflectivity, optical conductivity exhibits strong absorption of photons and great potential to conduct electrons in the UV region whereas Ba2InBrO6 has fascinating optical properties in the UV region. Hence, among these six novel compounds, Ba2InBrO6 has the preferable photovoltaic performance and conversion efficiency, making it has the potential candidate of photovoltaic application in the UV region. The thermoelectric properties such as Seebeck coefficient, power factor and thermoelectric figure of merit are computed to all the proposed compounds and found Ba2NaBrO6, Ca2AgBrO6 are more efficient due to its remarkable obtained power factor.

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来源期刊
CiteScore
4.20
自引率
10.70%
发文量
331
审稿时长
31 days
期刊介绍: Computational and Theoretical Chemistry publishes high quality, original reports of significance in computational and theoretical chemistry including those that deal with problems of structure, properties, energetics, weak interactions, reaction mechanisms, catalysis, and reaction rates involving atoms, molecules, clusters, surfaces, and bulk matter.
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