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Zwitterions in 3D Perovskites: Organosulfide-Halide Perovskites.
Li, Jiayi; Chen, Zhihengyu; Saha, Santanu; Utterback, James K; Aubrey, Michael L; Yuan, Rongfeng; Weaver, Hannah L; Ginsberg, Naomi S; Chapman, Karena W; Filip, Marina R; Karunadasa, Hemamala I.
Afiliação
  • Li J; Department of Chemistry, Stanford University, Stanford, California94305, United States.
  • Chen Z; Department of Chemistry, Stony Brook University, Stony Brook, New York11794, United States.
  • Saha S; Department of Physics, University of Oxford, OxfordOX1 3PU, United Kingdom.
  • Utterback JK; Department of Chemistry, University of California, Berkeley, California94720, United States.
  • Aubrey ML; Department of Chemistry, Stanford University, Stanford, California94305, United States.
  • Yuan R; Department of Chemistry, University of California, Berkeley, California94720, United States.
  • Weaver HL; Department of Chemistry, University of California, Berkeley, California94720, United States.
  • Ginsberg NS; Department of Chemistry, University of California, Berkeley, California94720, United States.
  • Chapman KW; STROBE, National Science Foundation Science and Technology Center, University of California Berkeley, Berkeley, California94720, United States.
  • Filip MR; Department of Physics, University of California Berkeley, Berkeley, California94720, United States.
  • Karunadasa HI; Materials Science Division and Molecular Biophysics and Integrated Bioimaging Division, Lawrence Berkeley National Laboratory, Berkeley, California94720, United States.
J Am Chem Soc ; 144(49): 22403-22408, 2022 12 14.
Article em En | MEDLINE | ID: mdl-36416496
Although sulfide perovskites usually require high-temperature syntheses, we demonstrate that organosulfides can be used in the milder syntheses of halide perovskites. The zwitterionic organosulfide, cysteamine (CYS; +NH3(CH2)2S-), serves as both the X- site and A+ site in the ABX3 halide perovskites, yielding the first examples of 3D organosulfide-halide perovskites: (CYS)PbX2 (X- = Cl- or Br-). Notably, the band structures of (CYS)PbX2 capture the direct bandgaps and dispersive bands of APbX3 perovskites. The sulfur orbitals compose the top of the valence band in (CYS)PbX2, affording unusually small direct bandgaps of 2.31 and 2.16 eV for X- = Cl- and Br-, respectively, falling in the ideal range for the top absorber in a perovskite-based tandem solar cell. Measurements of the carrier dynamics in (CYS)PbCl2 suggest carrier trapping due to defects or lattice distortions. The highly desirable bandgaps, band dispersion, and improved stability of the organosulfide perovskites demonstrated here motivate the continued expansion and exploration of this new family of materials, particularly with respect to extracting photocurrent. Our strategy of combining the A+ and X- sites with zwitterions may offer more members in this family of mixed-anion 3D hybrid perovskites.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Compostos de Cálcio / Compostos Inorgânicos Idioma: En Revista: J Am Chem Soc Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Compostos de Cálcio / Compostos Inorgânicos Idioma: En Revista: J Am Chem Soc Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Estados Unidos