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      Shape evolution and single particle luminescence of organometal halide perovskite nanocrystals.

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          Abstract

          Organometallic halide perovskites CH3NH3PbX3 (X = I, Br, Cl) have quickly become one of the most promising semiconductors for solar cells, with photovoltaics made of these materials reaching power conversion efficiencies of near 20%. Improving our ability to harness the full potential of organometal halide perovskites will require more controllable syntheses that permit a detailed understanding of their fundamental chemistry and photophysics. In this manuscript, we systematically synthesize CH3NH3PbX3 (X = I, Br) nanocrystals with different morphologies (dots, rods, plates or sheets) by using different solvents and capping ligands. CH3NH3PbX3 nanowires and nanorods capped with octylammonium halides show relatively higher photoluminescence (PL) quantum yields and long PL lifetimes. CH3NH3PbI3 nanowires monitored at the single particle level show shape-correlated PL emission across whole particles, with little photobleaching observed and very few off periods. This work highlights the potential of low-dimensional organometal halide perovskite semiconductors in constructing new porous and nanostructured solar cell architectures, as well as in applying these materials to other fields such as light-emitting devices and single particle imaging and tracking.

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          Author and article information

          Journal
          ACS Nano
          ACS nano
          1936-086X
          1936-0851
          Mar 24 2015
          : 9
          : 3
          Affiliations
          [1 ] †Department of Chemistry, Iowa State University, Ames, Iowa 50011, United States.
          [2 ] ‡U.S. DOE Ames Laboratory, Ames, Iowa 50011, United States.
          [3 ] §Center for Integrated Nanotechnologies, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, United States.
          Article
          10.1021/nn507020s
          25661423
          303cf85e-3ca6-4c52-b3f7-fd6d37f7fd3d
          History

          morphology control,nanocrystals,organometal halide perovskites,preferred orientation,single particle photoluminescence,size control

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