English

Optical Phonons in Methylammonium Lead Halide Perovskites and Implications for Charge Transport

Materials Science 2016-11-22 v2

Abstract

Lead-halide perovskites are promising materials for opto-electronic applications. Recent reports indicated that their mechanical and electronic properties are strongly affected by the lattice vibrations. Herein we report far-infrared spectroscopy measurements of CH3_{3}NH3_{3}Pb(I/Br/Cl)3_{3} thin films and single crystals at room temperature and a detailed quantitative analysis of the spectra. We find strong broadening and anharmonicity of the lattice vibrations for all three halide perovskites, which indicates dynamic disorder of the lead-halide cage at room temperature. We determine the frequencies of the transversal and longitudinal optical phonons, and use them to calculate, via appropriate models, the static dielectric constants, polaron masses, electron-phonon coupling constants, and upper limits for the phonon-scattering limited charge carrier mobilities. Within the limitations of the model used, we can place an upper limit of 200\,cm2^{2}V1^{-1}s1^{-1} for the room temperature charge carrier mobility in MAPbI3_{3} single crystals. Our findings are important for the basic understanding of charge transport processes and mechanical properties in metal halide perovskites.

Keywords

Cite

@article{arxiv.1607.08541,
  title  = {Optical Phonons in Methylammonium Lead Halide Perovskites and Implications for Charge Transport},
  author = {Michael Sendner and Pabitra K. Nayak and David A. Egger and Sebastian Beck and Christian Müller and Bernd Epding and Wolfgang Kowalsky and Leeor Kronik and Henry J. Snaith and Annemarie Pucci and Robert Lovrinčić},
  journal= {arXiv preprint arXiv:1607.08541},
  year   = {2016}
}