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Influence of Grain Size on Phase Transitions in Halide Perovskite Films

机译:晶粒尺寸对卤化物钙钛矿薄膜相变的影响

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Grain size in polycrystalline halide perovskite films is known to have an impact on the optoelectronic properties of the films, but its influence on their soft structural properties and phase transitions is unclear. Here, temperature-dependent X-ray diffraction, absorption, and macro- and micro-photoluminescence measurements are used to investigate the tetragonal to orthorhombic phase transition in thin methylammonium lead iodide films with grain sizes ranging from the micrometer scale down to the tens of nanometer scale. It is shown that the phase transition nominally at approximate to 150 K is increasingly suppressed with decreasing grain size and, in the smallest grains, the first evidence of a phase transition is only seen at temperatures as low as approximate to 80 K. With decreasing grain size, an increasing magnitude of the hysteresis is also seen in the structural and optoelectronic properties when cooling to, and then upon heating from, 100 K. This work reveals the remarkable sensitivity of the optoelectronic, physical, and phase properties to the local environment of the perovskite structure, which will have large ramifications for phase and defect engineering in operating devices.
机译:已知多晶卤化物钙钛矿薄膜中的晶粒尺寸会影响薄膜的光电性能,但尚不清楚其对薄膜的软结构性能和相变的影响。在这里,温度相关的X射线衍射,吸收以及宏观和微观光致发光测量被用来研究晶粒尺寸从微米级到数十纳米范围内的甲基碘化铅碘薄膜的四方相到正​​交相变。规模。结果表明,随着晶粒尺寸的减小,名义上大约150 K的相变会受到越来越大的抑制,而在最小的晶粒中,只有在大约80 K的低温下才能看到相变的第一个证据。当冷却到100 K,然后加热到100 K时,在结构和光电特性中还观察到磁滞幅度的增加。这项工作揭示了光电,物理和相位特性对局部环境的显着敏感性。钙钛矿结构,将对操作设备的相和缺陷工程产生重大影响。

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