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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Chemical pressure and rare-earth orbital contributions in mixed rare-earth silicides La_(5-x)Y_xSi_4 (0 ≤ x ≤ 5)
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Chemical pressure and rare-earth orbital contributions in mixed rare-earth silicides La_(5-x)Y_xSi_4 (0 ≤ x ≤ 5)

机译:混合稀土硅化物La_(5-x)Y_xSi_4(0≤x≤5)中的化学压力和稀土轨道贡献

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A crystallographic study and theoretical analysis of the structural and La/Y site preferences in the La_(5-x)Y_xSi_4 (0 ≤ x ≤ 5) series prepared by high-temperature methods is presented. At room temperature, Larich La_(5-x)Y_xSi_4 phases with x ≤ 3.0 exhibit the tetragonal Zr_5Si_4-type structure (space group P4_12_12, Z = 4, Pearson symbol tP36), which contains only Si-Si dimers. On the other hand, Y-rich phases with x = 4.0 and 4.5 adopt the orthorhombic Gd5Si4-type structure (space group Pnma, Z = 4, Pearson symbol oP36), also with Si-Si dimers, whereas Y_5Si _4 forms the monoclinic Gd_5Si_2Ge1 structure (space group P2_1/c, Z = 4, Pearson symbol mP36), which exhibits 50% "broken" Si-Si dimers. Local and long-range structural relationships among the tetragonal, orthorhombic, and monoclinic structures are discussed. Refinements from single crystal X-ray diffraction studies of the three independent sites for La or Y atoms in the asymmetric unit reveal partial mixing of these elements, with clearly different preferences for these two elements. First-principles electronic structure calculations, used to investigate the La/Y site preferences and structural trends in the La_(5-x)Y _xSi_4 series, indicate that long- and short-range structural features are controlled largely by atomic sizes. La 5d and Y 4d orbitals, however, generate distinct, yet subtle effects on the electronic density of states curves, and influence characteristics of Si-Si bonding in these phases.
机译:提出了通过高温方法制备的La_(5-x)Y_xSi_4(0≤x≤5)系列的结构和La / Y位点偏好的晶体学研究和理论分析。在室温下,x≤3.0的Larich La_(5-x)Y_xSi_4相表现出四方的Zr_5Si_4-型结构(空间群P4_12_12,Z = 4,皮尔逊符号tP36),其中仅包含Si-Si二聚体。另一方面,x = 4.0和4.5的富Y相采用正交晶Gd5Si4型结构(空间群Pnma,Z = 4,皮尔逊符号oP36),也具有Si-Si二聚体,而Y_5Si _4形成单斜Gd_5Si_2Ge1结构(空间群P2_1 / c,Z = 4,皮尔逊符号mP36),具有50%的“断裂” Si-Si二聚体。讨论了四方,正交和单斜结构之间的局部和远程结构关系。单晶X射线衍射研究对不对称单元中La或Y原子的三个独立位点进行的提炼揭示了这些元素的部分混合,这两种元素的偏好明显不同。第一性原理电子结构计算(用于研究La_(5-x)Y _xSi_4系列中的La / Y位置偏好和结构趋势)表明,长程和短程结构特征主要受原子尺寸控制。然而,La 5d和Y 4d轨道对态曲线的电子密度产生明显但微妙的影响,并影响这些阶段中Si-Si键的特征。

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