Nazari Safieh, T Azar Yavar
Physics and Accelerators Research School, Nuclear Science and Technology Research Institute, Tehran, Iran.
Physics and Accelerators Research School, AEOI, Tehran, Iran.
Phys Chem Chem Phys. 2024 May 22;26(20):14866-14873. doi: 10.1039/d4cp00165f.
The spin-orbit coupling in inorganic perovskite materials containing heavy elements causes interesting electronic characteristics such as Rashba and Dresselhaus effects. Several studies have reported significant band splitting in the presence of asymmetry, while the impacts of the external field strength, surface termination on the electronic structure still need to be resolved. In the current study, a systematic relation between the external parameters and the band splitting in CsPbI slabs is clarified through first-principles calculations. Here, we examine the band splitting and spin patterns of CsPbI slabs exposed to an external electric field ranging from zero to hundreds of kV cm. Our results indicate apparent non-linear behavior of the Rashba coefficient along with a turning point for the band splitting for a definite external field. Here, the origin of this quench in the band splitting is explained in terms of spatial localization of the wave functions and clear change in their center of charge going from low to high electric fields. The findings not only explain the origin of quenching band splitting but also reveal the external field's significance in the spin texture and recombination rate of 2D perovskites. The current research outcome paves the way for atomic scale engineering of perovskite materials for a wide range of applications.
含有重元素的无机钙钛矿材料中的自旋轨道耦合会导致诸如 Rashba 和 Dresselhaus 效应等有趣的电子特性。几项研究报告了在存在不对称性的情况下显著的能带分裂,而外部场强、表面终止对电子结构的影响仍有待解决。在当前的研究中,通过第一性原理计算阐明了 CsPbI 平板中外部参数与能带分裂之间的系统关系。在这里,我们研究了 CsPbI 平板在从零到数百 kV/cm 的外部电场下的能带分裂和自旋模式。我们的结果表明,Rashba 系数呈现明显的非线性行为,并且在特定外部场下能带分裂存在一个转折点。在这里,能带分裂淬灭的起源是根据波函数的空间局域化以及从低电场到高电场时其电荷中心的明显变化来解释的。这些发现不仅解释了淬灭能带分裂的起源,还揭示了外部场在二维钙钛矿的自旋纹理和复合率中的重要性。当前的研究成果为钙钛矿材料在广泛应用中的原子尺度工程铺平了道路。