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Effect of chemical nature of atoms on the electronic, dielectric, and dynamical properties of ABX(3) halide perovskite

机译:原子化学性质对ABX(3)卤化物钙钛矿电子,电介质和动力学特性的影响

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摘要

First-principles calculations within density functional theory (DFT) were performed on a series of halide perovskite compounds ABX(3)(A: Cs or Rb; B:Pb or Sn). Their electronic structure, lattice dynamics, and dielectric properties were studied in relationship with the change in atom species at each one of the three inequivalent crystallographic sites, to explain the origin of these properties. Thus, the variation of the bandgap with the overlap between the B cation lone pair and the electronic states of halide atoms, as well as with the distortion of the BX6 octahedra network is discussed. It is shown that the vibrational modes, phonon frequencies, atomic displacements, and the possible ferroelectric instability in these compounds are dependent on masses of atoms, volume of AX(12) polyhedron, as well as on streoactivity of Pb lone pair. Also, the Born effective charges, dielectric constant, spontaneous polarization, and infrared spectra are calculated. The relation between these dielectric properties and the ions dynamics is discussed.
机译:在一系列卤化物钙钛矿化合物ABX(3)(A:Cs或Rb; B:Pb或Sn)上进行密度函数理论(DFT)内的第一原理计算。研究了它们的电子结构,晶格动力学和介电性质与三种不平等晶体基位中每一个的原子物种的变化关系,以解释这些性质的起源。因此,讨论了带隙与B阳离子孤立和卤素原子的电子状态之间的重叠以及与BX6八面虫网络的变形之间的重叠的变化。结果表明,这些化合物中的振动模式,声子频率,原子位移和可能的铁电不稳定性取决于原子质量,轴(12)多面体的体积,以及Pb孤立的族型溶液。而且,计算出生的有效电荷,介电常数,自发极化和红外光谱。讨论了这些电介质性质与离子动力学之间的关系。

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