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Preserving a robust CsPbI3 perovskite phase via pressure-directed octahedral tilt.
Ke, Feng; Wang, Chenxu; Jia, Chunjing; Wolf, Nathan R; Yan, Jiejuan; Niu, Shanyuan; Devereaux, Thomas P; Karunadasa, Hemamala I; Mao, Wendy L; Lin, Yu.
Afiliação
  • Ke F; Stanford Institute for Materials and Energy Sciences, SLAC National Accelerator Laboratory, Menlo Park, CA, 94025, USA.
  • Wang C; Department of Geological Sciences, Stanford University, Stanford, CA, 94305, USA.
  • Jia C; Department of Geological Sciences, Stanford University, Stanford, CA, 94305, USA.
  • Wolf NR; Stanford Institute for Materials and Energy Sciences, SLAC National Accelerator Laboratory, Menlo Park, CA, 94025, USA.
  • Yan J; Department of Chemistry, Stanford University, Stanford, CA, 94305, USA.
  • Niu S; Department of Geological Sciences, Stanford University, Stanford, CA, 94305, USA.
  • Devereaux TP; Stanford Institute for Materials and Energy Sciences, SLAC National Accelerator Laboratory, Menlo Park, CA, 94025, USA.
  • Karunadasa HI; Department of Geological Sciences, Stanford University, Stanford, CA, 94305, USA.
  • Mao WL; Stanford Institute for Materials and Energy Sciences, SLAC National Accelerator Laboratory, Menlo Park, CA, 94025, USA.
  • Lin Y; Department of Materials Science and Engineering, Stanford University, Stanford, CA, 94305, USA.
Nat Commun ; 12(1): 461, 2021 Jan 19.
Article em En | MEDLINE | ID: mdl-33469021
ABSTRACT
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.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article