Consequences of the Pb-S Bond Formation for Lead Halide Perovskites

被引:0
|
作者
Wierzbowska, Malgorzata [1 ]
Wojtkowiak, Kamil [2 ]
Miklas, Alicja [1 ]
Jezierska, Aneta [2 ]
机构
[1] Polish Acad Sci, Inst High Pressure Phys, Ul Sokolowska 29-37, PL-01142 Warsaw, Poland
[2] Univ Wroclaw, Fac Chem, Ul F Joliot Curie 14, PL-50383 Wroclaw, Poland
关键词
Bethe-Salpeter equation; Lead halide perovskites; Multiexcitons; Phase transitions; Singlet fission; Solar cells; MULTIEXCITON GENERATION; SOLAR-CELL; EFFICIENT; DYNAMICS;
D O I
10.1002/chem.202402205
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Lead halide perovskites are structurally not stable due to their ionic bonds. Using sulfur agents in the crystal growth improves the stability and performance of the photovoltaic and light-emitting devices. In this theoretical work, we use a small toy S-radical in place of A cation in the bulk of lead iodide perovskite, and highlight the significance of the Pb-S covalent-double-bond formation for: the charge redistribution on the neighboring bonds that also turn to be covalent, phase transformation to a stable non-perovskite structure, and superior optoelectronic properties. The chemical analysis was performed with the Quantum Theory of Atoms In Molecules (QTAIM) and Non-Covalent Interactions (NCI) index. Excitonic properties were obtained from the solution of ab initio Bethe-Salpeter equation. Presence of the spin-orbit coupling triggers an interplay between the Frenkel and charge-transfer multiexcitons, switching between the photovoltaic and laser applications. Multiexcitons obey the exciton-fission preconditions.
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页数:9
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