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解析范德华力对钙钛矿结构中手性转移的影响:密度泛函理论的见解。

Decoding Van der Waals Impact on Chirality Transfer in Perovskite Structures: Density Functional Theory Insights.

机构信息

São Carlos Institute of Chemistry, University of São Paulo, P.O. Box 780, 13560-970 São Carlos, SP, Brazil.

University of Brasília, Institute of Physics, 70910-970 Brasília, DF, Brazil.

出版信息

J Chem Inf Model. 2024 Feb 26;64(4):1306-1318. doi: 10.1021/acs.jcim.3c01895. Epub 2024 Feb 12.

Abstract

Chiral organic-inorganic perovskites exhibit unique physicochemical properties driven by the symmetry of monovalent organic cations. However, an atomistic understanding of how chiral cations transfer their chirality to the inorganic framework and the role played by van der Waals (vdW) interactions in this process is still incomplete. In this work, we report a theoretical investigation, based on density functional theory calculations within the Perdew-Burke-Ernzerhof (PBE) formulation for the exchange-correlation functional, into the role of the vdW interactions in the chirality transfer process. For that, we selected several vdW corrections, namely, Grimme (D2, D3, D3(BJ)), Tkatchenko-Scheffler (TS, TS+SCS, TS+HSI), density-dependent energy correction (dDsC), and many-body scattering (MBD) energy method correction. For the chiral perovskite systems, we selected a set of chiral organic-inorganic perovskites with several dimensions, namely, from zero-dimensional to three-dimensional, each having enantiomers with R and S configurations. Based on a statistical treatment of the relative errors of all lattice parameters with respect to experimental data, we found that D3, D3(BJ), TS, TS+SCS, TS+HSI, and MBD vdW are the most accurate corrections to describe the equilibrium structural properties of chiral perovskites using the PBE method. We identify chirality-induced sequential asymmetries of distorted octahedrons and propose angular descriptors to quantify them, where the orientations of these distortions depend on the R or S nature of the chiral cations. Furthermore, we demonstrate the importance of accurate vdW interactions in precisely describing these asymmetric distortions. By means of binding energies and charge-transfer analysis, we show that the impact of vdW corrections on the charge distribution leads to a subtle strengthening of hydrogen bonds between chiral cations and inorganic octahedra, resulting in an increase in the binding energy. Finally, we identified that the Rashba-Dresselhaus effect in two-dimensionality is refined by vdW interactions.

摘要

手性有机-无机钙钛矿由于单价有机阳离子的对称性而表现出独特的物理化学性质。然而,对于手性阳离子如何将其手性传递给无机骨架以及范德华(vdW)相互作用在这个过程中所扮演的角色,我们仍然缺乏原子水平的理解。在这项工作中,我们基于密度泛函理论(DFT)计算,在 Perdew-Burke-Ernzerhof(PBE)泛函的交换相关函数中,报道了一个关于 vdW 相互作用在手性传递过程中作用的理论研究。为此,我们选择了几种 vdW 修正方法,包括 Grimme(D2、D3、D3(BJ))、Tkatchenko-Scheffler(TS、TS+SCS、TS+HSI)、密度相关能量修正(dDsC)和多体散射(MBD)能量方法修正。对于手性钙钛矿体系,我们选择了一组具有几个维度的手性有机-无机钙钛矿,从零维到三维,每个都具有 R 和 S 构型的对映异构体。基于对所有晶格参数相对于实验数据的相对误差的统计处理,我们发现 D3、D3(BJ)、TS、TS+SCS、TS+HSI 和 MBD vdW 是描述手性钙钛矿平衡结构性质的最准确修正方法。我们确定了扭曲八面体的手性诱导序不对称性,并提出了角度描述符来对其进行量化,这些扭曲的方向取决于手性阳离子的 R 或 S 性质。此外,我们证明了准确的 vdW 相互作用对手性诱导序不对称性的精确描述的重要性。通过结合能和电荷转移分析,我们表明 vdW 修正对手性阳离子和无机八面体之间氢键的电荷分布的影响导致氢键的强度略微增强,从而增加了结合能。最后,我们发现二维的 Rashba-Dresselhaus 效应是由 vdW 相互作用细化的。

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