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首页> 外文期刊>Acta Crystallographica, Section B. Structural Science >Structures of 6H perovskites Ba3CaSb2O9 and Ba3SrSb2O9 determined by synchrotron X-ray diffraction, neutron powder diffraction and ab initio calculations
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Structures of 6H perovskites Ba3CaSb2O9 and Ba3SrSb2O9 determined by synchrotron X-ray diffraction, neutron powder diffraction and ab initio calculations

机译:通过同步加速器X射线衍射,中子粉末衍射和从头算计算确定6H钙钛矿Ba3CaSb2O9和Ba3SrSb2O9的结构

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摘要

The structures of the 6H perovskites Ba3B2+Sb25+O9, B = Ca and Sr, have been solved and refined using synchrotron X-ray and neutron powder diffraction data. Ba3CaSb2O9 and Ba3SrSb2O9 have monoclinic C2/c and triclinic P (1) over bar spacegroup symmetries, respectively, while Ba3MgSb2O9 has ideal hexagonal P63/mmc space-group symmetry. The symmetry-lowering distortions are a consequence of internal 'chemical pressure' owing to the increasing effective ionic radius of the alkaline-earth cation in the perovskite B site from Mg2+ (0.72 angstrom) to Ca2+ (1.00 angstrom) to Sr2+ (1.18 angstrom). Increasing the effective ionic radius further to Ba2+ (1.35 angstrom) leads to decomposition at room temperature. The driving force behind the transition from P63/mmc to C2/c is the need to alleviate underbonding of Ba2+ cations in the perovskite A site via octahedral rotations, while the transition from C2/c to P (1) over bar is driven by the need to regularize the shape of the Sb2O9 face-sharing octahedral dimers. Ab initio geometry-optimization calculations were used to find a triclinic starting model for Ba3SrSb2O9.
机译:6H钙钛矿Ba3B2 + Sb25 + O9(B = Ca和Sr)的结构已使用同步加速器X射线和中子粉末衍射数据进行了解析和改进。 Ba3CaSb2O9和Ba3SrSb2O9在条形空间群对称性上分别具有单斜C2 / c和三斜晶系P(1),而Ba3MgSb2O9具有理想的六角形P63 / mmc空间群对称性。降低对称性的变形是内部“化学压力”的结果,这是由于钙钛矿B位的碱土阳离子的有效离子半径从Mg2 +(0.72埃)到Ca2 +(1.00埃)到Sr2 +(1.18埃)的增加。将有效离子半径进一步增加到Ba2 +(1.35埃)会导致在室温下分解。从P63 / mmc转变为C2 / c的驱动力是需要通过八面体旋转来减轻钙钛矿A位点中Ba2 +阳离子的欠键合,而从C2 / c转变为P(1)的过程是由棒的驱动。需要调整Sb2O9面共享八面体二聚体的形状。从头开始进行几何优化计算,以找到Ba3SrSb2O9的三斜模型。

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