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A combined molecular dynamics and experimental study of two-step process enabling low-temperature formation of phase-pure α-FAPbI3

机译:两步工艺的组合分子动力学及实验研究,从而实现相纯α-FAPBI3的低温形成

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It is well established that the lack of understanding the crystallization process in a two-step sequential deposition has a direct impact on efficiency, stability, and reproducibility of perovskite solar cells. Here, we try to understand the solid-solid phase transition occurring during the two-step sequential deposition of methylammonium lead iodide and formamidinium lead iodide. Using metadynamics, x-ray diffraction, and Raman spectroscopy, we reveal the microscopic details of this process. We find that the formation of perovskite proceeds through intermediate structures and report polymorphs found for methylammonium lead iodide and formamidinium lead iodide. From simulations, we discover a possible crystallization pathway for the highly efficient metastable α phase of formamidinium lead iodide. Guided by these simulations, we perform experiments that result in the low-temperature crystallization of phase-pure α-formamidinium lead iodide.
机译:很好地确定,在两步顺序沉积中缺乏了解结晶过程对钙钛矿太阳能电池的效率,稳定性和再现性具有直接影响。 在此,我们试图了解在甲基铅碘化物和甲脒铅碘化物的两步顺序沉积期间发生的固体相转变。 使用元动力学,X射线衍射和拉曼光谱,我们揭示了这个过程的微观细节。 我们发现钙钛矿的形成通过中间结构进行,并报告对甲基丙烯酸铅和甲脒铅碘化物的多晶型物。 从模拟中,我们发现了用于甲脒铅碘化物的高效亚稳态α相的可能结晶途径。 通过这些模拟引导,我们执行导致相纯α-甲脒铅碘化物的低温结晶的实验。

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