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甲脒铅碘钙钛矿高压相IV和V中的择优取向阳离子构型

Preferred oriented cation configurations in high pressure phases IV and V of methylammonium lead iodide perovskite.

作者信息

Sukmas Wiwittawin, Sakulsupich Vichawan, Tsuppayakorn-Aek Prutthipong, Pinsook Udomsilp, Pakornchote Teerachote, Klinkla Rakchat, Bovornratanaraks Thiti

机构信息

Extreme Conditions Physics Research Laboratory (ECPRL), Physics of Energy Materials Research Unit (PEMRU), Department of Physics, Faculty of Science, Chulalongkorn University, Bangkok, 10330, Thailand.

Thailand Center of Excellence in Physics, Ministry of Higher Education, Science, Research and Innovation, 328 Si Ayutthaya Road, Bangkok, 10400, Thailand.

出版信息

Sci Rep. 2020 Dec 3;10(1):21138. doi: 10.1038/s41598-020-77852-y.

Abstract

A microscopic viewpoint of structure and dipolar configurations in hybrid organic-inorganic perovskites is crucial to understanding their stability and phase transitions. The necessity of incorporating dispersion interactions in the state-of-the-art density functional theory for the [Formula: see text] perovskite (MAPI) is demonstrated in this work. Some of the vdW methods were selected to evaluate the corresponding energetics properties of the cubic MAPI with various azimuthally rotated MA organic cation orientations. The highest energy barrier obtained from PBEsol reaches 18.6 meV/MA-ion, which is equivalent to 216 K, the temperature above which the MA cations randomly reorient. Energy profiles calculated by vdW incorporated functionals, on the other hand, exhibit various distinct patterns. The well-developed vdW-DF-cx functional was selected, thanks to its competence, to evaluate the total energies of different MA dipolar configurations in [Formula: see text] cubic supercell of MAPI under pressures. The centrosymmetric arrangement of the MA cations that provide zero total dipole moment configuration results in the lowest energy state profiles under pressure, while the non-centrosymmetric scheme displays a unique behaviour. Despite being overall unpolarised, the latter calculated with PBEsol leads to a rigid shift of energy from the profile obtained from the dispersive vdW-DF-cx functional. It is noteworthy that the energy profile responsible for the maximum polarised configuration nevertheless takes the second place in total energy under pressure.

摘要

从微观角度研究有机-无机杂化钙钛矿的结构和偶极构型对于理解其稳定性和相变至关重要。本文证明了在最先进的密度泛函理论中纳入色散相互作用对于甲脒钙钛矿(MAPI)的必要性。选择了一些范德华(vdW)方法来评估具有各种方位旋转的甲脒(MA)有机阳离子取向的立方MAPI的相应能量性质。从PBEsol得到的最高能垒达到18.6 meV/MA离子,这相当于216 K,高于此温度MA阳离子会随机重新取向。另一方面,通过纳入vdW的泛函计算的能量分布呈现出各种不同的模式。由于其性能良好,选择了成熟的vdW-DF-cx泛函来评估在压力下MAPI的[具体化学式]立方超胞中不同MA偶极构型的总能量。提供零总偶极矩构型的MA阳离子的中心对称排列在压力下导致最低能量状态分布,而非中心对称方案则表现出独特的行为。尽管总体上是非极化的,但用PBEsol计算的后者导致能量相对于从色散vdW-DF-cx泛函获得的分布有刚性偏移。值得注意的是,负责最大极化构型的能量分布在压力下的总能量中仍占第二位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb53/7713306/7b14f9d7f684/41598_2020_77852_Fig1_HTML.jpg

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