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Valence and Conduction Band Densities of States of Metal Halide Perovskites: A Combined Experimental-Theoretical Study

机译:金属卤化物钙钛矿态的价和导带密度:组合的实验理论研究

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摘要

We report valence and conduction band densities of states measured via ultraviolet and inverse photoemission spectroscopies on three metal halide perovskites, specifically methylammonium lead iodide and bromide and cesium lead bromide (MAPbI(3), MAPbBr(3), CsPbBr3), grown at two different institutions on different substrates. These are compared with theoretical densities of states (DOS) calculated via density functional theory. The qualitative agreement achieved between experiment and theory leads to the identification of valence and conduction band spectral features, and allows a precise determination of the position of the band edges, ionization energy and electron affinity of the materials. The comparison reveals an unusually low DOS at the valence band maximum (VBM) of these compounds, which confirms and generalizes previous predictions of strong band dispersion and low DOS at the MAPbI3 VBM. This low DOS calls for special attention when using electron spectroscopy to determine the frontier electronic states of lead halide perovskites.
机译:我们报告通过价和通过三个金属卤化物钙钛矿,特别是甲基铵碘化铅和溴化物和溴化铯铯(MAPbI(3),MAPbBr(3),CsPbBr3)上的金属卤化物钙离子通过反光发射光谱测量的状态的价和导带密度。机构在不同的基质上。将这些与通过密度泛函理论计算的理论状态密度(DOS)进行比较。实验和理论之间达成的定性一致性导致了化合价和导带光谱特征的识别,并允许精确确定带边缘的位置,电离能和材料的电子亲和力。比较显示这些化合物的价带最大值(VBM)处的DOS异常低,这证实并概括了先前对MAPbI3 VBM的强谱带分散和低DOS的预测。当使用电子光谱法测定卤化钙钛矿的前沿电子态时,这种低DOS值需要特别注意。

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