首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Vibrational Properties of the Organic Inorganic Halide Perovskite CH3NH3PbI3 from Theory and Experiment: Factor Group Analysis, First-Principles Calculations, and Low-Temperature Infrared Spectra
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Vibrational Properties of the Organic Inorganic Halide Perovskite CH3NH3PbI3 from Theory and Experiment: Factor Group Analysis, First-Principles Calculations, and Low-Temperature Infrared Spectra

机译:有机无机卤化物钙钛矿CH3NH3PbI3的振动特性从理论和实验:因子组分析,第一性原理计算和低温红外光谱

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In this work, we investigate the vibrational properties of the hybrid organic/inorganic halide perovskite MAPbI(3) (MA = CH3NH3) in the range 6-3500 cm(-1) by combining first-principles density-functional perturbation theory calculations and low-temperature infrared (IR) absorption measurements on evaporated perovskite films. By using a group factor analysis, we establish the symmetry of the normal modes of vibration and predict their IR and Raman activity. We validate our analysis via explicit calculation of the IR intensities. Our calculated spectrum is in good agreement with our measurements. By comparing theory and experiment, we are able to assign most of the features in the IR spectrum. Our analysis shows that the IR spectrum of MAPbI3 can be partitioned into three distinct regions: the internal vibrations of the MA cations (800-3100 cm(-1)), the cation librations (140-180 cm(-1)), and the internal vibrations of the PbI3 network (<100 cm(-1)). The low-frequency region of the IR spectrum is dominated by Pb-I stretching modes of the PbI3 network with B-u symmetry and librational modes of the MA cations. In addition, we find that the largest contributions to the static dielectric constant arise from Pb-I stretching and Pb-I-Pb rocking modes, and that one low-frequency B-2u Pb-I stretching mode exhibits a large LO-TO splitting of 50 cm(-1).
机译:在这项工作中,我们结合第一原理密度函数摄动理论计算和低密度理论,研究了杂化有机/无机卤化物钙钛矿MAPbI(3)(MA = CH3NH3)在6-3500 cm(-1)范围内的振动特性。蒸发钙钛矿薄膜的高温红外(IR)吸收测量。通过使用群因子分析,我们建立了正常振动模式的对称性,并预测了其IR和拉曼活动。我们通过显式计算IR强度来验证我们的分析。我们计算出的频谱与我们的测量结果非常吻合。通过比较理论和实验,我们可以分配红外光谱中的大多数功能。我们的分析表明,MAPbI3的红外光谱可分为三个不同的区域:MA阳离子的内部振动(800-3100 cm(-1)),阳离子释放(140-180 cm(-1))和PbI3网络的内部振动(<100 cm(-1))。红外光谱的低频区域由具有B-u对称性的PbI3网络的Pb-I拉伸模式和MA阳离子的自由模式主导。此外,我们发现对静态介电常数的最大贡献来自Pb-I拉伸和Pb-I-Pb摇摆模式,并且一种低频B-2u Pb-I拉伸模式表现出大的LO-TO分裂50厘米(-1)

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