首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Dependence of the Electronic and Optical Properties of Methylammonium Lead Triiodide on Ferroelectric Polarization Directions and Domains: A First Principles Computational Study
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Dependence of the Electronic and Optical Properties of Methylammonium Lead Triiodide on Ferroelectric Polarization Directions and Domains: A First Principles Computational Study

机译:甲基铵铅三碘化物对铁电偏振方向和域的依赖性:第一个原理计算研究

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摘要

Organic inorganic perovskites, and in particular methyl ammonium (MA) lead triiodide, recently emerged as promising for thin film solar cell applications and, a a result, have attracted much attention. However, some important phenomena have been less examined in these systems, e.g., effects of ferroelectric domains on the optoelectronic properties. In this work, we investigate the effects of the polarization direction in single domains, and of uncharged and charged ferroelectric domains, on the electronic and optical properties of MA lead triiodide by first principles calculations. Highly accurate quasiparticle band gap calculations enabled characterization of the electronic structure of charged and uncharged domains in comparison to single domains. Additionally, analysis of the effects of a potential on the Born effective charges and respective density of states provided an understanding of changes in the band gap, as dependent on the type of domain, and on the MA moiety direction. Agreement between experimental and calculated optical spectra was achieved by inclusion of electron hole interactions, also discerning specific transitions. However, due to the flexibility in the MA moiety's orientation that causes spectral broadening, consideration of a statistical ensemble of configurations is required, which is not taken into account in a single computation. Indeed, our analysis in considering a number of MA directions leads to better agreement, with experiment. The calculations predict that the optical response is rather sensitive to the type and size of ferroelectric domains, which implies that such a response could be used for their characterization, thus calling for further experimental exploration.
机译:有机无机钙钛矿,和特别是甲基铵(MA)碘化铅,最近出现的有希望的薄膜太阳能电池的应用和,一个结果,而备受关注。然而,这些系统中的一些重要现象较少,例如,铁电域对光电性质的影响。在这项工作中,我们研究了通过第一原理计算对MA铅三碘化物的电子和光学特性的单个结构域和不带电和带电铁电域的偏振方向的影响。与单个域相比,高精度的Quasiparticle带隙计算使得具有充电和无充电域的电子结构的表征。另外,分析潜力对出生的有效电荷和各自密度的影响,提供了对带隙的变化的理解,如依赖于域的类型,以及在MA部分方向上。通过包含电子空穴相互作用来实现实验和计算光谱之间的一致性,也辨别出特定的过渡。然而,由于MA部分的灵活性导致光谱扩展,需要考虑配置的统计集合,这在单个计算中未被考虑。实际上,考虑到一些MA方向的分析导致更好的协议,实验。该计算预测光学响应对铁电域的类型和大小相当敏感,这意味着这种响应可用于其特征,从而呼吁进一步的实验探索。

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