论文标题
金属卤化物钙钛矿中的时间范围和空间振动
Temporally-decoherent and spatially-coherent vibrations in metal halide perovskite
论文作者
论文摘要
金属卤化物钙钛矿(MHP)中长的载体寿命和缺陷耐受性是MHP光电设备出色性能的主要贡献者。据报道,较大的极性子是较长的载体寿命。然而,包括所谓的声子熔化在内的大极大形成的微观机制仍在争论中。在这里,采用飞行时间(TOF)非弹性中子散射(INS)实验和第一原理密度功能理论(DFT)计算来研究甲基氨基铅碘化物中的晶状体振动(或声子动力学)($ \ rm {mapbi_3} $),一个原始的MHPS示例。我们的发现是,光子声子随温度逐渐逐渐失去时间连贯性,这在正骨到四方结构相变处消失。然而,令人惊讶的是,我们发现在整个熔点过程中仍然保留了空间连贯性。我们认为,时间上的变形和空间相干振动有助于在这种金属卤化物钙钛矿中形成大极子。
The long carrier lifetime and defect tolerance in metal halide perovskites (MHPs) are major contributors to the superb performance of MHP optoelectronic devices. Large polarons were reported to be responsible for the long carrier lifetime. Yet microscopic mechanisms of the large polaron formation including the so-called phonon melting, are still under debate. Here, time-of-flight (TOF) inelastic neutron scattering (INS) experiments and first-principles density-functional theory (DFT) calculations were employed to investigate the lattice vibrations (or phonon dynamics) in methylammonium lead iodide ($\rm{MAPbI_3}$), a prototypical example of MHPs. Our findings are that optical phonons lose temporal coherence gradually with increasing temperature which vanishes at the orthorhombic-to-tetragonal structural phase transition. Surprisingly, however, we found that the spatial coherence is still retained throughout the decoherence process. We argue that the temporally decoherent and spatially coherent vibrations contribute to the formation of large polarons in this metal halide perovskite.