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首页> 外文期刊>International Journal of Quantum Chemistry >POINT DEFECT ENERGIES FOR STRONTIUM TITANATE: A PAIR POTENTIALS STUDY
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POINT DEFECT ENERGIES FOR STRONTIUM TITANATE: A PAIR POTENTIALS STUDY

机译:钛酸锶的点缺陷能量:对势研究

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A crystal potential has been derived for strontium titanate and used to calculate the intrinsic defect properties of the RT cubic phase. Interactive potentials for a number of uni-, di-, tri-, and tetra-valent metal ions with O2-, Sr2+, and Ti4+ has been derived by well-tried methods, using HFSCF calculations of the ionic charge densities and the conserved density approximation. Kinetic energy, exchange, and correlation contributions to the total interaction energy are approximated by the corresponding contributions to an electron gas of the same charge density as the sum of the two SCF ionic charge densities at each separation R. These impurity-host lattice potentials are then used to calculate the solubility of these ions in cubic SrTiO3 as well as the possible mobility of these substituents. 26 refs.
机译:钛酸锶的晶体势已被导出,并用于计算RT立方相的固有缺陷性质。使用HFSCF计算离子电荷密度和守恒密度,通过良好的方法已经得出了具有O2-,Sr2 +和Ti4 +的许多单价,二价,三价和四价金属离子的相互作用电势。近似。动能,交换和对总相互作用能的相关贡献可通过对电子气体的相应贡献来近似,该电子电荷的电荷密度与每个间隔R处两个SCF离子电荷密度的总和相同。这些杂质-主体晶格电势为然后用于计算这些离子在立方SrTiO3中的溶解度以及这些取代基的可能迁移率。 26个参考

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