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Electronic Structure of (Organic-)Inorganic Metal Halide Perovskites: The Dilemma of Choosing the Right Functional

ADVANCED THEORY AND SIMULATIONS(2022)

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Abstract
Organic-inorganic metal halide perovskites (HaPs) are intensively studied for their light-harvesting properties. Owing to the interplay between strong electron-electron interaction and spin-orbit coupling (SOC), their quantitative theoretical description is still a challenge as evidenced by the wide variety of results available in literature. Here, various methodologies for computing their electronic structure are evaluated, also accounting for SOC. More specific, the GW approach as well as variants of the hybrid functionals PBE0 and HSE are at the center of the investigations. For both functionals, methods to determine the mixing parameter a are explored, and for HSE, the impact of the screening-parameter omega is investigated. An extensive investigation of Pbl(2), a precursor of many HaPs, leads to the conclusion that hybrid functionals with alpha tuned by the density-based mixing method are most suitable for obtaining band gaps comparable to G(0) W-0 results. Moreover, this methodology is transferable to CsPbl(3) and the same behavior is expected for the entire family of lead-iodine perovskites.
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Key words
hybrid functionals, organic-inorganic metal halide perovskites, one-shot GW, spin-orbit coupling
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