首页> 美国卫生研究院文献>Scientific Reports >Thermodynamic Stability and Structural Insights for CH3NH3Pb1−xSixI3 CH3NH3Pb1−xGexI3 and CH3NH3Pb1−xSnxI3 Hybrid Perovskite Alloys: A Statistical Approach from First Principles Calculations
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Thermodynamic Stability and Structural Insights for CH3NH3Pb1−xSixI3 CH3NH3Pb1−xGexI3 and CH3NH3Pb1−xSnxI3 Hybrid Perovskite Alloys: A Statistical Approach from First Principles Calculations

机译:CH3NH3Pb1-xSixI3CH3NH3Pb1-xGexI3和CH3NH3Pb1-xSnxI3混合钙钛矿合金的热力学稳定性和结构见解:一种基于第一性原理计算的统计方法

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摘要

The recent reaching of 20% of conversion efficiency by solar cells based on metal hybrid perovskites (MHP), e.g., the methylammonium (MA) lead iodide, CH3NH3PbI3 (MAPbI3), has excited the scientific community devoted to the photovoltaic materials. However, the toxicity of Pb is a hindrance for large scale commercial of MHP and motivates the search of another congener eco-friendly metal. Here, we employed first-principles calculations via density functional theory combined with the generalized quasichemical approximation to investigate the structural, thermodynamic, and ordering properties of MAPb1−xSixI3, MAPb1−xGexI3, and MAPb1−xSnxI3 alloys as pseudo-cubic structures. The inclusion of a smaller second metal, as Si and Ge, strongly affects the structural properties, reducing the cavity volume occupied by the organic cation and limitating the free orientation under high temperature effects. Unstable and metaestable phases are observed at room temperature for MAPb1−xSixI3, whereas MAPb1−xGexI3 is energetically favored for Pb-rich in ordered phases even at very low temperatures. Conversely, the high miscibility of Pb and Sn into MAPb1−xSnxI3 yields an alloy energetically favored as a pseudo-cubic random alloy with tunable properties at room temperature.
机译:最近,基于金属杂化钙钛矿(MHP)的太阳能电池达到20%的转换效率,例如甲基铵(MA)碘化铅CH3NH3PbI3(MAPbI3)引起了致力于光伏材料的科学界的兴奋。然而,Pb的毒性是MHP大规模商业化的障碍,并促使人们寻找另一种同类生态友好金属。在这里,我们通过密度泛函理论结合广义拟化学近似采用第一性原理计算来研究MAPb1-xSixI3,MAPb1-xGexI3和MAPb1-xSnxI3合金作为伪立方结构的结构,热力学和有序性能。包含较小的第二金属(如Si和Ge)会强烈影响结构性能,减少有机阳离子占据的空腔体积,并限制高温作用下的自由取向。室温下,MAPb1-xSixI3处于不稳定和易代谢的阶段,而Pb-在能量上更倾向于MAPb 1-x Ge x I 3 。即使在非常低的温度下,也有序相丰富。相反,Pb和Sn与MAPb 1−x Sn x I 3 的高溶混性产生了一种在能量上受到青睐的伪立方随机合金在室温下具有可调特性的合金。

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