DFT aided prediction of phase stability, optoelectronic and thermoelectric properties of A2AuScX6 (A= Cs, Rb; X= Cl, Br, I) double perovskites for energy harvesting technology
S. Mahmud, M. A. Ali, M. M. Hossain, M. M. Uddin

TL;DR
This study uses density functional theory to analyze the structural, electronic, optical, and thermoelectric properties of novel A2AuScX6 double perovskites, identifying their potential for energy harvesting applications like solar cells and thermoelectric devices.
Contribution
First DFT-based investigation of A2AuScX6 double perovskites, providing comprehensive insights into their stability and energy-related properties for energy harvesting technologies.
Findings
High thermoelectric figure of merit (ZT) values at 300 K.
Suitable band gaps for photovoltaic applications.
Potential for thermoelectric and solar energy harvesting.
Abstract
In this work, density functional theory (DFT) is used to find out the ground state structures of A2AuScX6 (A= Cs, Rb; X= Cl, Br, I) double Perovskite (DP) halides for the first time. The DP A2AuScX6 halides were studied for their structural phase stability and optoelectronic properties in order to identify potential materials for energy harvesting systems. The stability criteria were verified by computing the formation energy, binding energy, phonon dispersion curve, stiffness constants, tolerance, and octahedral factors. The electronic band structure, carrier effective mass, density of states (DOS), and charge density distribution were calculated to reveal the nature of electronic conductivity and the chemical bonding nature present within them. For Cs2AuScX6 (Rb2AuScX6) [X = Cl, Br, I], the corresponding values of band gap [using TB-mBJ] are 1.88 (1.93), 1.68 (1.71), and 1.30 (1.32)…
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Taxonomy
TopicsPerovskite Materials and Applications · Inorganic Chemistry and Materials · Heusler alloys: electronic and magnetic properties
