Kim Heejae, Hunger Johannes, Cánovas Enrique, Karakus Melike, Mics Zoltán, Grechko Maksim, Turchinovich Dmitry, Parekh Sapun H, Bonn Mischa
Department of Molecular Spectroscopy, Max Planck Institute for Polymer Research, Ackermannweg 10, 55128, Mainz, Germany.
Nat Commun. 2017 Sep 25;8(1):687. doi: 10.1038/s41467-017-00807-x.
Methylammonium lead iodide perovskite is an outstanding semiconductor for photovoltaics. One of its intriguing peculiarities is that the band gap of this perovskite increases with increasing lattice temperature. Despite the presence of various thermally accessible phonon modes in this soft material, the understanding of how precisely these phonons affect macroscopic material properties and lead to the peculiar temperature dependence of the band gap has remained elusive. Here, we report a strong coupling of a single phonon mode at the frequency of ~ 1 THz to the optical band gap by monitoring the transient band edge absorption after ultrafast resonant THz phonon excitation. Excitation of the 1 THz phonon causes a blue shift of the band gap over the temperature range of 185 ~ 300 K. Our results uncover the mode-specific coupling between one phonon and the optical properties, which contributes to the temperature dependence of the gap in the tetragonal phase.Methylammonium lead iodide perovskite, a promising material for efficient photovoltaics, shows a unique temperature dependence of its optical properties. Kim et al. quantify the coupling between the optical gap and a lattice phonon at 1 THz, which favorably contributes to the thermal variation of the gap.
甲基碘化铅钙钛矿是一种用于光伏的杰出半导体。其一个有趣的特性是,这种钙钛矿的带隙会随着晶格温度的升高而增大。尽管在这种软材料中存在各种热可及的声子模式,但对于这些声子如何精确影响宏观材料特性并导致带隙呈现出特殊的温度依赖性,人们仍知之甚少。在此,我们通过监测超快共振太赫兹声子激发后的瞬态带边吸收,报道了频率约为1太赫兹的单一声子模式与光学带隙之间的强耦合。在185至300开尔文的温度范围内,激发1太赫兹声子会导致带隙发生蓝移。我们的结果揭示了单一声子与光学性质之间的模式特异性耦合,这有助于解释四方相中带隙的温度依赖性。甲基碘化铅钙钛矿是一种有望用于高效光伏的材料,其光学性质呈现出独特的温度依赖性。金等人量化了光学带隙与1太赫兹晶格声子之间的耦合,这对带隙的热变化有积极贡献。