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Multiple-Stage Structure Transformation of Organic-Inorganic Hybrid Perovskite CH 3 NH 3 PbI 3

机译:多阶段结构转化的有机无机杂交钙钛矿CH 3 NH 3 PBI 3

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By performing spatially resolved Raman and photoluminescence spectroscopy with varying excitation wavelength, density, and data acquisition parameters, we achieve a unified understanding towards the spectroscopy signatures of the organic-inorganic hybrid perovskite, transforming from the pristine state ( CH 3 NH 3 PbI 3 ) to the fully degraded state (i.e., PbI 2 ) for samples with varying crystalline domain size from mesoscopic scale (approximately 100?nm) to macroscopic size (centimeters), synthesized by three different techniques. We show that the hybrid perovskite exhibits multiple stages of structure transformation occurring either spontaneously or under light illumination, with exceptionally high sensitivity to the illumination conditions (e.g., power, illumination time, and interruption pattern). We highlight four transformation stages (stages I–IV, with stage I being the pristine state) along either the spontaneous or photoinduced degradation path exhibiting distinctly different Raman spectroscopy features at each stage, and point out that previously reported Raman spectra in the literature reflect highly degraded structures of either stage III or stage IV. Additional characteristic optical features of partially degraded materials under the joint action of spontaneous and photodegradation are also given. This study offers reliable benchmark results for understanding the intrinsic material properties and structure transformation of this unique category of hybrid materials, and the findings are pertinently important to a wide range of potential applications where the hybrid material is expected to function in greatly different environment and light-matter interaction conditions.
机译:通过以不同的激发波长,密度和数据采集参数进行空间分辨的拉曼和光致发光光谱,我们对来自原始状态转化的有机 - 无机杂交钙钛矿的光谱签名来实现统一的理解(CH 3 NH 3 PBI 3)对于具有不同型型型尺度(约100μm)的晶域尺寸(约100μm)到宏观尺寸(厘米)的样品,通过三种不同技术合成的样品。我们表明,杂交钙钛矿具有自发性或在光照射的多个结构变换阶段,对照明条件(例如,功率,照明时间和中断模式)具有极高的敏感性。我们突出了四个变换阶段(阶段I-IV,阶段I-iv是原始状态),其在每个阶段具有明显不同的拉曼光谱特征,并指出了先前报告的文献中的拉曼光谱反射高度III阶段或阶段IV的降解结构。还给出了在自发和光降解的关节作用下部分降解材料的附加特征光学特征。本研究提供可靠的基准,以了解这种独特类别的混合材料类别的内在材料特性和结构转化,并且该研究结果对于多种潜在的应用是一种重要的潜在应用,其中杂种材料预计将在大大不同的环境和光线下起作用 - 尝试的互动条件。

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