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用于模拟碘化铯铅钙钛矿(CsPbI)相变的新型精确分子动力学势函数。

New accurate molecular dynamics potential function to model the phase transformation of cesium lead triiodide perovskite (CsPbI).

作者信息

Almishal Saeed S I, Rashwan Ola

机构信息

Penn State Harrisburg USA

出版信息

RSC Adv. 2020 Dec 17;10(72):44503-44511. doi: 10.1039/d0ra08434d. eCollection 2020 Dec 9.

Abstract

Inorganic metallic halide perovskites and cesium lead triiodide, CsPbI, in particular, have gained enormous attention recently due to their unique photovoltaic properties and low processing temperatures. However, their structural stability and phase transition still need an in-depth investigation to better optimize their optoelectronic properties. For sake of time and cost, Classical Molecular Dynamics (CMD) and first principles calculations are being used to predict the structure stability and phase transition of CsPbI. The major challenge of CMD is the choice of proper interatomic potential functions. In this paper, a new hybrid force field is being introduced, which integrates the embedded atomic potentials of Cs-Cs and Pb-Pb with Buckingham-Coulomb potentials. The Buckingham-Coulomb interatomic potential was solely employed as well. The outputs from both force fields were reported and compared to the experimental values. In fact, the new Hybrid Embedded Atomic Buckingham-Coulomb (EABC) potential reproduces, with a great degree of accuracy (within 2.5%), the structural properties, such as the radial distribution functions, interatomic separation distances, and the density. Also, it detects the phase transformation from an orthorhombic into a cubic crystal structure and the melting temperature at 594 K and 750 K respectively which agrees with the experimental values to within 1%. The new proposed hybrid potential proved to be accurate so it could potentially be used to infer the structure stability and the mechanical and thermal properties of the pure inorganic halide perovskites and the mixed halide perovskites as well which are used in various applications.

摘要

无机金属卤化物钙钛矿,特别是铯铅三碘化物(CsPbI),由于其独特的光伏特性和较低的加工温度,近年来受到了极大的关注。然而,它们的结构稳定性和相变仍需要深入研究,以便更好地优化其光电性能。出于时间和成本的考虑,经典分子动力学(CMD)和第一性原理计算正被用于预测CsPbI的结构稳定性和相变。CMD的主要挑战在于选择合适的原子间势函数。本文引入了一种新的混合力场,它将Cs-Cs和Pb-Pb的嵌入原子势与Buckingham-Coulomb势相结合。同时也单独使用了Buckingham-Coulomb原子间势。报告了两种力场的输出结果,并与实验值进行了比较。事实上,新的混合嵌入原子Buckingham-Coulomb(EABC)势以很高的精度(在2.5%以内)再现了结构特性,如径向分布函数、原子间间距和密度。此外,它还检测到从正交晶系到立方晶体结构的相变,以及分别在594 K和750 K的熔化温度,这与实验值的误差在1%以内。新提出的混合势被证明是准确的,因此它有可能被用于推断纯无机卤化物钙钛矿和混合卤化物钙钛矿的结构稳定性以及机械和热性能,这些钙钛矿被用于各种应用中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd72/9058495/8a889d488457/d0ra08434d-f1.jpg

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