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通过计算模拟揭示有机间隔基和空腔阳离子对类 2D 钙钛矿的影响。

Revealing the impact of organic spacers and cavity cations on quasi-2D perovskites via computational simulations.

机构信息

Chemistry Department, Federal University of Paraná, Curitiba, 81531-980, Brazil.

Department of Physics, Federal University of Pelotas, PO Box 354, Pelotas, RS, 96010-900, Brazil.

出版信息

Sci Rep. 2023 Mar 17;13(1):4446. doi: 10.1038/s41598-023-31220-8.

Abstract

Two-dimensional hybrid lead iodide perovskites based on methylammonium (MA) cation and butylammonium (BA) organic spacer-such as [Formula: see text]-are one of the most explored 2D hybrid perovskites in recent years. Correlating the atomistic profile of these systems with their optoelectronic properties is a challenge for theoretical approaches. Here, we employed first-principles calculations via density functional theory to show how the cation partially canceled dipole moments through the [Formula: see text] terminal impact the structural/electronic properties of the [Formula: see text] sublattices. Even though it is known that at high temperatures, the organic cation assumes a spherical-like configuration due to the rotation of the cations inside the cage, our results discuss the correct relative orientation according to the dipole moments for ab initio simulations at 0 K, correlating well structural and electronic properties with experiments. Based on the combination of relativistic quasiparticle correction and spin-orbit coupling, we found that the MA horizontal-like configuration concerning the inorganic sublattice surface leads to the best relationship between calculated and experimental gap energy throughout n = 1, 2, 3, 4, and 5 number of layers. Conversely, the dipole moments cancellation (as in BA-MA aligned-like configuration) promotes the closing of the gap energies through an electron depletion mechanism. We found that the anisotropy [Formula: see text] isotropy optical absorption conversion (as a bulk convergence) is achieved only for the MA horizontal-like configuration, which suggests that this configuration contribution is the majority in a scenario under temperature effects.

摘要

基于甲脒(MA)阳离子和正丁基脒(BA)有机间隔物的二维混合碘化铅钙钛矿,例如 [Formula: see text]-,是近年来研究最多的二维混合钙钛矿之一。将这些体系的原子级结构与它们的光电性质相关联是理论方法的一个挑战。在这里,我们通过密度泛函理论的第一性原理计算表明,[Formula: see text] 末端的阳离子部分抵消偶极矩如何影响 [Formula: see text] 亚晶格的结构/电子性质。尽管已知在高温下,由于阳离子在笼内的旋转,有机阳离子会呈现出类似球形的构象,但我们的结果根据零温下从头算模拟的偶极矩讨论了正确的相对取向,很好地将结构和电子性质与实验相关联。基于相对论准粒子修正和自旋轨道耦合的组合,我们发现,相对于无机亚晶格表面,MA 水平型构型导致计算和实验能带隙能量之间具有最佳关系,贯穿 n = 1、2、3、4 和 5 个层数。相反,偶极矩的抵消(如 BA-MA 对齐构型)通过电子耗尽机制促进了能带隙能量的闭合。我们发现,各向异性 [Formula: see text] 各向同性光吸收转换(作为体收敛)仅在 MA 水平型构型下实现,这表明在温度效应下,这种构型的贡献占主导地位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c19/10023785/943bb93c4f85/41598_2023_31220_Fig1_HTML.jpg

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