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Anharmonicity and Disorder in the Black Phases of CsPbI3 used for Stable Inorganic Perovskite Solar Cells

机译:用于稳定无机钙钛矿太阳能电池的CsPbI3黑色相的非谐性和无序性

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Hybrid perovskite materials have emerged over the past five years as absorber layers for new high-efficiency yet low-cost solar cells (PSCs) that combine the advantages of organic and inorganic semiconductors. Here, employing the linear response (DFPT) approach of Density Functional Theory (DFT) and frozen phonon calculations, we reveal strong anharmonic effects in the inorganic CsPbI3 perovskite. We also show through high resolution in-situ synchrotron XRD measurements that CsPbI3 can be undercooled below its transition temperature and temporarily maintained in its perovskite structure down to room temperature, stabilizing a metastable perovskite polytype (black γ-phase) crucial for photovoltaic applications. Among the four phases of CsPbI3, we found that this phase is the only one to behave harmonically around equilibrium. Last, we explain the Rashba effect in these materials as a consequence of the symmetry breaking induced by the double-well instabilities.
机译:在过去的五年中,钙钛矿杂化材料已成为吸收有机和无机半导体优点的新型高效,低成本太阳能电池(PSC)的吸收层。在这里,采用密度泛函理论(DFT)的线性响应(DFPT)方法和冷冻声子计算,我们揭示了无机CsPbI3钙钛矿中的强非谐效应。我们还通过高分辨率原位同步加速器XRD测量表明,CsPbI3可以过冷至其转变温度以下,并暂时保持其钙钛矿结构直至室温,从而稳定了对光伏应用至关重要的亚稳钙钛矿多型体(黑色γ相)。在CsPbI3的四个阶段中,我们发现该阶段是唯一一个在平衡附近谐和的行为。最后,我们解释了由于双阱不稳定性引起的对称破坏而在这些材料中产生的拉什巴效应。

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