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Role of organic cation in modern lead-based perovskites

机译:有机阳离子在现代铅基钙钛矿中的作用

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Hybrid organic-inorganic metal perovskites (ABX(3), A- organic cation, B-metal ion, X-halide ion) have shown significant potential as thin-film solar cells or Dye solar cells (DSC) materials. Using a time-dependent density functional theory (TDDFT) study, this work explores the role that the central organic cation plays in defining the optoelectronic and physical properties of metal perovskites. Cubic phases of CH3NH3PbI3, CH3NH3PbCl3, CH3NH3PbICl2, and CH3NH3PbI2Cl perovskite structures are investigated using TDDFT with Gaussian 16. Electronic and optical properties, including transition energy, band gap, IR and absorption spectra and vibrational frequencies are examined. It is observed that the organic cation reduces the unit cell volume of the outer metal halide structure from approximately 9-20% for different perovskite materials. The peak optical absorption also correspondingly decreases by a significant margin, ranging from about 40-60%.
机译:杂化有机-无机金属钙钛矿(ABX(3),A-有机阳离子,B-金属离子,X卤化物离子)已显示出作为薄膜太阳能电池或染料太阳能电池(DSC)材料的巨大潜力。使用基于时间的密度泛函理论(TDDFT)研究,这项工作探索了中心有机阳离子在定义金属钙钛矿的光电和物理性质中的作用。使用具有高斯16的TDDFT研究了CH3NH3PbI3,CH3NH3PbCl3,CH3NH3PbICl2和CH3NH3PbI2Cl钙钛矿结构的立方相。研究了电子和光学性质,包括跃迁能,带隙,IR和吸收光谱以及振动频率。观察到,对于不同的钙钛矿材料,有机阳离子将外部金属卤化物结构的晶胞体积从约9-20%降低。峰值光吸收也相应地显着降低,范围为约40-60%。

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