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Lattice vibrations and dynamic disorder in two-dimensional hybrid lead-halide perovskites

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arxiv 1812.05255 v1 pith:TNP7HBDD submitted 2018-12-13 cond-mat.mtrl-sci physics.chem-ph

classification cond-mat.mtrl-sciphysics.chem-ph
keywords cationorganicdependencederivativedisorderdynamiclatticenature
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By means of non-resonant Raman spectroscopy and density functional theory calculations, we measure and assign the vibrational spectrum of two distinct two-dimensional lead-iodide perovskite derivatives. These two samples are selected in order to probe the effects of the organic cation on lattice dynamics. One templating cation is composed of a phenyl-substituted ammonium derivative, while the other contains a linear alkyl group. We find that modes that directly involve the organic cation are more prevalent in the phenyl-substituted derivative. Comparison of the temperature dependence of the Raman spectra reveals differences in the nature of dynamic disorder, with a strong dependence on the molecular nature of the organic moiety.

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  1. Perspective: Exciton polarons in two-dimensional hybrid metal-halide perovskites

    cond-mat.mtrl-sci 2019-08 conditional novelty 5.0 of 10

    The authors contend that excitons in 2D metal-halide perovskites are exciton polarons, with the spectral fine structure and dynamics determined by an interplay of short- and long-range exciton-lattice coupling.

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