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Aboma Mendasa, MSc, PhD. Photo.

Aboma Merdasa

Researcher

Aboma Mendasa, MSc, PhD. Photo.

Defect-induced local variation of crystal phase transition temperature in metal-halide perovskites

Author

  • Alexander Dobrovolsky
  • Aboma Merdasa
  • Eva L. Unger
  • Arkady Yartsev
  • Ivan G. Scheblykin

Summary, in English

Solution-processed organometal halide perovskites are hybrid crystalline semiconductors highly interesting for low-cost and efficient optoelectronics. Their properties are dependent on the crystal structure. Literature shows a variety of crystal phase transition temperatures and often a spread of the transition over tens of degrees Kelvin. We explain this inconsistency by demonstrating that the temperature of the tetragonal-to-orthorhombic phase transition in methylammonium lead triiodide depends on the concentration and nature of local defects. Phase transition in individual nanowires was studied by photoluminescence microspectroscopy and super-resolution imaging. We propose that upon cooling from 160 to 140 K, domains of the crystal containing fewer defects stay in the tetragonal phase longer than highly defected domains that readily transform to the high bandgap orthorhombic phase at higher temperatures. The existence of relatively pure tetragonal domains during the phase transition leads to drastic photoluminescence enhancement, which is inhomogeneously distributed across perovskite microcrystals.

Department/s

  • Chemical Physics
  • NanoLund: Centre for Nanoscience

Publishing year

2017-12-01

Language

English

Publication/Series

Nature Communications

Volume

8

Issue

1

Document type

Journal article

Publisher

Nature Publishing Group

Topic

  • Condensed Matter Physics
  • Physical Chemistry
  • Materials Chemistry

Status

Published

ISBN/ISSN/Other

  • ISSN: 2041-1723