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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of octahedral tilting on the electronic structure and optical properties of d(0) double perovskites A(2)ScSbO(6) (A = Sr, Ca)
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Effects of octahedral tilting on the electronic structure and optical properties of d(0) double perovskites A(2)ScSbO(6) (A = Sr, Ca)

机译:八面体倾斜对D(0)双钙耐力的电子结构和光学性质的影响A(2)SCSBO(6)(A = SR,CA)

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With increasing temperature, Sr2ScSbO6 undergoes three structural phase transitions at approximately 400K, 560K and 650K, leading to the following sequence of phases: P2(1)/n -> I2= m -> I4/m -> Fm (3) over barm, making it an ideal candidate to study the effects of octahedral tilting while keeping other parameters fixed. To ascertain the isolated effects of octahedral distortions, the electronic and optical properties of the monoclinic P2(1)/ n (at room temperature), monoclinic I2/m (at 430K), tetragonal I4= m (at 613K) and the cubic Fm (3) over barm (at 660K) phases have been studied in terms of the electronic structure, dielectric constant, optical conductivity and electron energy loss spectrum using density functional theory. Ca2ScSbO6, on the other hand, shows only a P2(1)/n phase at room temperature and its properties have been compared with the corresponding Sr compound. UV-Vis spectroscopic studies of the optical properties of the room-temperature phase of these d(0) double perovskites have been performed and presence of large direct bandgap for both the compounds have been reported. The electronic bandgaps for the room temperature phases are found to be in good agreement with the corresponding experimental values obtained using the Kubelka-Munk function. Interestingly, in contrast to other Sc-based d(0) double perovskites, with increasing octahedral distortions, the effective t(2g) bandwidth remains unaffected while the states forming the band change due to changes in unit cell orientation, leading to small effects on the electronic and optical properties. (C) 2017 Elsevier B.V. All rights reserved.
机译:随着温度的增加,SR2Scsbo6在约400K,560K和650K处经历三个结构相转变,导致以下序列序列:P2(1)/ N - > I2 = M - > I4 / M - > FM(3)在BARM上,使其成为研究八面体倾斜的影响的理想候选者,同时保持其他参数固定。为了确定八面体畸变的分离效果,单斜斜晶型P2(1)/ N(室温)的电子和光学性能,单斜斜晶型I2 / m(在430K处),四方I4 = M(在613K处)和立方FM (3)在使用密度函数理论的电子结构,介电常数,光导和电子能损光谱方面已经研究了BARM(在660K)上。另一方面,CA2Scsbo6仅在室温下仅显示P2(1)/ N相,并且其性质已经与相应的SR化合物进行了比较。已经进行了这些D(0)双钙酸盐的室温阶段的光学性质的UV-Vis光谱研究,并且已经报道了两种化合物的大直接带隙的存在。对于使用Kubelka-Munk功能获得的相应实验值,发现室温阶段的电子带隙与使用Kubelka-Munk函数获得的相应实验值很好。有趣的是,与其他基于SC的D(0)双噬菌体相比,随着八面体畸变的增加,有效的T(2G)带宽仍未受到影响,而形成带的频带因单位细胞方向的变化而形成的频带发生变化,导致少量效果电子和光学性质。 (c)2017年Elsevier B.V.保留所有权利。

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