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Journal Article

Preserving a robust CsPbI3 perovskite phase via pressure-directed octahedral tilt

Functional CsPbI3 perovskite phases are not stable at ambient conditions and spontaneously convert to a non-perovskite δ phase, limiting their applications as solar cell materials. We demonstrate the preservation of a black CsPbI3 perovskite structure to room temperature by subjecting the δ phase to pressures of 0.1 – 0.6 GPa followed by heating and rapid cooling. Synchrotron X-ray diffraction and Raman spectroscopy indicate that this perovskite phase is consistent with orthorhombic γ-CsPbI3. Once formed, γ-CsPbI3 could be then retained after releasing pressure to ambient conditions and shows substantial stability at 35% relative humidity. First-principles density functional theory calculations indicate that compression directs the out-of-phase and in-phase tilt between the [PbI6]4− octahedra which in turn tune the energy difference between δ- and γ-CsPbI3, leading to the preservation of γ-CsPbI3. Here, we present a high-pressure strategy for manipulating the (meta)stability of halide perovskites for the synthesis of desirable phases with enhanced materials functionality.

Author(s)
Feng Ke
Chenxu Wang
Chunjing Jia
Nathan R. Wolf
Jiejuan Yan
Shanyuan Niu
Thomas P. Devereaux
Hemamala I. Karunadasa
Wendy L. Mao
Yu Lin
Journal Name
Nature Communications
Publication Date
January 19, 2021
DOI
10.1038/s41467-020-20745-5