材料科学
拉希巴效应
光致发光
卤化物
点反射
八面体
凝聚态物理
偶极子
带隙
量子阱
从头算
光电子学
自旋电子学
铁磁性
物理
结晶学
光学
晶体结构
无机化学
化学
量子力学
激光器
作者
Eliane Aparecida Morais,Naidel A. M. S. Caturello,Maykon Alves Lemes,Henrique Ferreira,Fábio Furlan Ferreira,J.J.S. Acuña,Sérgio Brochsztain,Gustavo M. Dalpian,J. A. Souza
标识
DOI:10.1021/acsami.3c16541
摘要
Layered lead halide perovskites have attracted much attention as promising materials for a new generation of optoelectronic devices. To make progress in applications, a full understanding of the basic properties is essential. Here, we study 2D-layered (BA)2PbX4 by using different halide anions (X = I, Br, and Cl) along with quantum confinement. The obtained cell parameter evolution, supported by experimental measurements and theoretical calculations, indicates strong lattice distortions of the metal halide octahedra, breaking the local inversion symmetry in (BA)2PbCl4, which strongly correlates with a pronounced Rashba spin-splitting effect. Optical measurements reveal strong photoluminescence quenching and a drastic reduction in the PL quantum yield in this larger band gap compound. We suggest that these optical results are closely related to the appearance of the Rashba effect due to the existence of a local electric dipole. The results obtained in ab initio calculations showed that the (BA)2PbCl4 possesses electrical polarization of 0.13 μC/cm2 and spin-splitting energy of about 40 meV. Our work establishes that local octahedra distortions induce Rashba spin splitting, which explains why obtaining UV-emitting materials with high PLQY is a big challenge.
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