Ab-Initio based investigation of the optoelectronic, transport, mechanical properties of vacancy-ordered double perovskites A2PtI6 (A = Na, Li): An emerging class of solar cell and thermoelectric materials

IF 4.6 2区 物理与天体物理 Q1 OPTICS
Anjali Kumari , Jisha Annie Abraham , Abhishek Kumar Mishra , Ramesh Sharma , A.M. Alshehri
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引用次数: 0

Abstract

In this study, the structural, thermoelectric, mechanical, electrical, and optical properties of vacancy-ordered double perovskites A2PtI6 (A = Li, Na) have been investigated using density functional theory-based methods. As per the findings, both the materials are stable as confirmed by their calculated formation and cohesive energies. Each compound’s ductility and mechanical stability have been verified. The values of band-gap are computed using dissimilar exchange correlation functions PBE-GGA, mBJ, mBJ + SOC. The results show that A2PtI6 (A = Na, Li) are semiconducting material possessing indirect bandgaps having the values of 0.344 eV and 0.347 eVs through PBE-GGA and 0.954 eV and 1.034 eVs by mBJ approximations. After SOC corrections, the band gap values for Li2PtI6 and Na2PtI6 are found to be 0.820 eV and 0.880 eVs respectively. Similarly, the optical properties like dielectric function, reflectivity, absorption coefficient, loss functions are also computed to explore the optoelectronics applications for these compounds. We also assess the thermoelectric parameters that result in advantageous thermoelectric performance, such as power factors, Seebeck coefficients, and electronic & lattice thermal conductivities. At 1200 K, Li2PtI6 and Na2PtI6 attain maximum figure of merit (ZT) of 0.58 and 0.50, respectively. These outcomes underscore the materials’ potential for use in thermoelectric devices and solar cells, highlighting their efficacy at high temperatures.
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来源期刊
CiteScore
8.50
自引率
10.00%
发文量
1060
审稿时长
3.4 months
期刊介绍: Optics & Laser Technology aims to provide a vehicle for the publication of a broad range of high quality research and review papers in those fields of scientific and engineering research appertaining to the development and application of the technology of optics and lasers. Papers describing original work in these areas are submitted to rigorous refereeing prior to acceptance for publication. The scope of Optics & Laser Technology encompasses, but is not restricted to, the following areas: •development in all types of lasers •developments in optoelectronic devices and photonics •developments in new photonics and optical concepts •developments in conventional optics, optical instruments and components •techniques of optical metrology, including interferometry and optical fibre sensors •LIDAR and other non-contact optical measurement techniques, including optical methods in heat and fluid flow •applications of lasers to materials processing, optical NDT display (including holography) and optical communication •research and development in the field of laser safety including studies of hazards resulting from the applications of lasers (laser safety, hazards of laser fume) •developments in optical computing and optical information processing •developments in new optical materials •developments in new optical characterization methods and techniques •developments in quantum optics •developments in light assisted micro and nanofabrication methods and techniques •developments in nanophotonics and biophotonics •developments in imaging processing and systems
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