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Temperature-dependent excitonic photoluminescence of hybrid organometal halide perovskite films

Physical Chemistry Chemical Physics · 2014 · Vol. 16(41) · pp. 22476–22481
Kewei WuAshok BeraChun MaYuanmin DuYang YangLiang LiTom Wu

Abstract

Organometal halide perovskites have recently attracted tremendous attention due to their potential for photovoltaic applications, and they are also considered as promising materials in light emitting and lasing devices. In this work, we investigated in detail the cryogenic steady state photoluminescence properties of a prototypical hybrid perovskite CH3NH3PbI3-xClx. The evolution of the characteristics of two excitonic peaks coincides with the structural phase transition around 160 K. Our results further revealed an exciton binding energy of 62.3 ± 8.9 meV and an optical phonon energy of 25.3 ± 5.2 meV, along with an abnormal blue-shift of the band gap in the high-temperature tetragonal phase.

Perovskite Materials and ApplicationsQuantum Dots Synthesis And PropertiesOrganic Light-Emitting Diodes ResearchPhotoluminescencePerovskite (structure)HalideTetragonal crystal systemExcitonLasing thresholdBand gapMaterials scienceOptoelectronicsPhonon
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