首页> 外文期刊>Open Journal of Physical Chemistry >Molecular Dynamics Simulations of Perovskites: The Effect of Potential Function Representation on Equilibrium Structural Properties
【24h】

Molecular Dynamics Simulations of Perovskites: The Effect of Potential Function Representation on Equilibrium Structural Properties

机译:钙钛矿的分子动力学模拟:势函数表示对平衡结构性质的影响

获取原文
           

摘要

The perovskites with general formula ABX3 have been widely used as for materials with their unique properties (ferroelectric, piezoelectric, dielectric, catalytic and so on). Hybrid organolead halide perovskites are a class of semiconductors with ABX3 (X = Cl, Br, and I) structures consisting of lead cations in 6-fold coordination (B site), surrounded by an octahedron of halide anions (X site, face centered) together with the organic components in 12-fold cub octahedral coordination. These hybrid perovskites have a direct band gap, a large absorption coefficient as well as high charge carrier mobility that represent a very attractive characteristic of cost-effective solar cells. Basically, these crystals are inorganic solids of CaTiO3 type held together by bonds that are either ionic or partially ionic and partially covalent. In spite of the partially covalent character of the Ti-O bond, the system is modeled by a two-body central force interatomic potential (the form of the Vashishta and Rahman interatomic potential), which has been used successfully for many materials with a perovskite structure. In the present work using molecular dynamics (MD) simulation method we investigate the dynamical and structural behavior of CaTiO3 perovskite at normal pressure and temperature conditions. The MD calculations were performed on a system of 16,000 particles (3200Ca + 3200Ti + 96,00O), initially in an orthorhombic-Pbnm structure. The orthorhombic MD box had edges Lx = 53.4 ?, Ly = 53.4 ? and Lz = 61.12 ?, which provided a density matching the experimental value of ρ = 4 g/cm3. Starting with this structure and using proposed interatomic potentials the MD system stabilizes at room temperature in its initial configuration. The aim of the present study to explore the effect of potential function representations on structural equilibrium properties for the perovskite models including hybrid halide ones outlined above. Concerning the perovskite equilibrium state we elucidate the role of potential function modification on the atomic pair correlation and structural re-organization. The details of the interatomic potential representation have to be crucially important for obtaining of correct analysis data in crystallic, liquid and amorphous phases including perovskite systems.
机译:通式为ABX3的钙钛矿已被广泛用作具有独特性能(铁电,压电,介电,催化等)的材料。杂化有机铅卤化物钙钛矿是一类具有ABX3(X = Cl,Br和I)结构的半导体,该结构由6倍配位的铅阳离子(B位置)组成,被卤化阴离子的八面体包围(X位置,面心)与有机成分一起形成12倍幼崽八面体配位。这些杂化钙钛矿具有直接的带隙,大的吸收系数以及高的载流子迁移率,这代表了具有成本效益的太阳能电池非常吸引人的特性。这些晶体基本上是CaTiO3型无机固体,通过离子键或部分离子键和部分共价键结合在一起。尽管Ti-O键具有部分共价特征,但该系统还是通过两体中心力原子间电势(Vashishta和Rahman原子间电势的形式)建模的,该势能已成功用于许多具有钙钛矿的材料结构体。在当前使用分子动力学(MD)模拟方法的工作中,我们研究了钙钛矿型钙钛矿在常压和常温条件下的动力学和结构行为。 MD计算是在16,000个粒子(3200Ca + 3200Ti + 96,00O)的系统上进行的,最初是正交晶体-Pbnm结构。正交MD盒的边Lx = 53.4?,Ly = 53.4?。 Lz =61.12Ω,其密度与实验值ρ= 4g / cm 3相匹配。从这种结构开始,并使用拟议的原子间电势,MD系统以其初始构型在室温下稳定。本研究的目的是探讨钙钛矿模型(包括上述混合卤化物)的潜在功能表征对结构平衡性质的影响。关于钙钛矿平衡态,我们阐明了潜在功能修饰对原子对相关性和结构重组的作用。原子间电势表示的细节对于在结晶,液相和非晶相(包括钙钛矿体系)中获得正确的分析数据至关重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号