Songvilay M, Bari M, Ye Z-G, Xu Guangyong, Gehring P M, Ratcliff W D, Schmalzl K, Bourdarot F, Roessli B, Stock C
School of Physics and Astronomy and Centre for Science at Extreme Conditions, University of Edinburgh, Edinburgh EH9 3FD, United Kingdom.
Department of Chemistry and 4D labs, Simon Fraser University, Burnaby, British Columbia, Canada V5A1S6.
Phys Rev Mater. 2018 Dec;2(12). doi: 10.1103/PhysRevMaterials.2.123601.
Lead halide hybrid perovskites consist of an inorganic framework hosting a molecular cation located in the interstitial space. These compounds have been extensively studied as they have been identified as promising materials for photovoltaic applications with the interaction between the molecular cation and the inorganic framework implicated as influential for the electronic properties. CHNHPbCl undergoes two structural transitions from a high temperature cubic unit cell to a tetragonal phase at 177 K and then a subsequent orthorhombic transition at 170 K. We have measured the low-frequency lattice dynamics using neutron spectroscopy and observe an energy broadening in the acoustic phonon linewidth towards the high-symmetry point when approaching the transitions. Concomitant with these zone boundary anomalies is a hardening of the entire acoustic phonon branch measured in the limit near the (2, 0, 0) Bragg position with decreasing temperature. Measurements of the elastic scattering at the Brillouin zone edges , and show Bragg peaks appearing below these structural transitions. Based on selection rules of neutron scattering, we suggest that the higher 177 K transition is displacive with a distortion of the local octahedral environment and the lower transition is a rigid tilt transition of the octahedra. We do not observe any critical broadening in energy or momentum, beyond resolution, of these peaks near the transitions. We compare these results to the critical properties reported near the structural transitions in other perovskites and particularly CsPbCl [Y. Fujii, S. Hoshino, Y. Yamada, and G. Shirane, Phys. Rev. B , 4549 (1974)]. We suggest that the simultaneous onset of static resolution-limited Bragg peaks at the zone boundaries and the changes in acoustic phonon energies near the zone center is evidence of a coupling between the inorganic framework and the molecular cation. The results also highlight the importance of displacive transitions in organic-inorganic hybrid perovskites.
卤化铅混合钙钛矿由一个无机骨架组成,该骨架容纳位于间隙空间中的分子阳离子。这些化合物已被广泛研究,因为它们被认为是用于光伏应用的有前途的材料,分子阳离子与无机骨架之间的相互作用被认为对电子性质有影响。CHNHPbCl经历两次结构转变,从高温立方晶胞转变为177K时的四方相,然后在170K时发生随后的正交转变。我们使用中子光谱测量了低频晶格动力学,并观察到在接近转变时,声学声子线宽朝着高对称点的能量展宽。与这些区域边界异常相伴的是,在(2, 0, 0)布拉格位置附近的极限情况下,随着温度降低,整个声学声子分支变硬。在布里渊区边缘 、 和 处的弹性散射测量显示,布拉格峰出现在这些结构转变以下。基于中子散射的选择规则,我们认为较高的177K转变是位移型的,伴随着局部八面体环境的畸变,而较低的转变是八面体的刚性倾斜转变。我们在转变附近没有观察到这些峰在能量或动量上有超出分辨率的任何临界展宽。我们将这些结果与其他钙钛矿特别是CsPbCl [Y. Fujii, S. Hoshino, Y. Yamada, and G. Shirane, Phys. Rev. B , 4549 (1974)]在结构转变附近报道的临界性质进行了比较。我们认为,在区域边界处静态分辨率限制的布拉格峰的同时出现以及区域中心附近声学声子能量的变化是无机骨架与分子阳离子之间耦合的证据。结果还突出了位移型转变在有机-无机混合钙钛矿中的重要性。