Abstract
The local electronic structures are simulated for a perovskite-type oxide with four polymorphous phases, SrZrO 3 , using the DV-Xa molecular orbital method. It is found that a series of phase transitions occurs at certain temperatures so as to retain not only the Zr-O bond strength, but also the Sr-O bond strength, by the tilting of ZrO 6 octahedra and the attendant accommodation to the Zr-O and the Sr-O interionic distances. The occurrence of such smart phase transitions is observed in other perovskite-type oxides, SrRuO 3 and SrHfO 3 . Another type of phase transition occurs by the cooperative ionic displacements along the [100] direction in BaTiO 3 . The differences in the local chemical bond are discussed between the two types of phase transitions.
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