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Oxygen vacancy ordering phenomena in the mixed-conducting hexagonal perovskite Ba7Y2Mn3Ti2O20

机译:混合导电六方钙钛矿Ba7Y2Mn3Ti2O20中的氧空位有序现象

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摘要

A 21R-type mixed conducting oxygen-deficient hexagonal perovskite Ba7Y2Mn3Ti2O20 was synthesized and its structure characterized by variable temperature neutron powder diffraction. The structure is characterized by the presence of both BaO2 and BaO3 layers. In the oxygen-stoichiometric material, the vacancies are ordered in c'-BaO2 layers. Extra oxygen is accommodated by intergrowth of the vacancy-ordered c'-BaO2 layers with cubic c-BaO3-x layers (x congruent to 1), which have disordered 2/3 oxygen occupancy. This material displays mixed electronic and oxide ionic conduction at high temperature, and the role of the two distinct and partially occupied anion sites within the BaO2 layers in permitting the oxygen mobility is discussed.
机译:合成了21R型混合导电缺氧六角形钙钛矿Ba7Y2Mn3Ti2O20,并通过变温中子粉末衍射表征了其结构。该结构的特征是同时存在BaO2和BaO3层。在氧化学计量材料中,空位在c'-BaO2层中排序。空位有序的c'-BaO2层与立方c-BaO3-x层(x等于1)的相互生长会容纳额外的氧气,立方c-BaO3-x层具有2/3的无氧占有率。该材料在高温下显示出混合的电子和氧化物离子传导,并讨论了BaO2层中两个不同且部分占据的阴离子位点在允许氧迁移中的作用。

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