| Literature DB >> 27338309 |
Sara Rahimnejad1,2, Alexander Kovalenko1,3, Sergio Martí Forés4, Clara Aranda1, Antonio Guerrero5.
Abstract
We show the influence of species present in precursor solution during formation of lead halide perovskite materials on the structural defects of the films. The coordination of lead by competing solvent molecules and iodide ions dictate the type of complexes present in the films. Depending on the processing conditions all PbIS5 (+) , PbI2 S4, PbI3 S3 (-) , PbI4 S2 (2-) , PbI5 S2 (3-) , PbI6 (4-) and 1D (Pb2 I4 )n chains are observed by absorption measurements. Different parameters are studied such as polarity of the solvent, concentration of iodide ions, concentration of solvent molecules and temperature. It is concluded that strongly coordinating solvents will preferentially form species with a low number of iodide ions and less coordinative solvents generate high concentration of PbI6 (-) . We furthermore propose that all these plumbate ions may act as structural defects determining electronic properties of the photovoltaic films.Entities:
Keywords: absorption; coordination chemistry; defects; perovskite solar cells; solvent coordination
Year: 2016 PMID: 27338309 DOI: 10.1002/cphc.201600575
Source DB: PubMed Journal: Chemphyschem ISSN: 1439-4235 Impact factor: 3.102