首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Non-stoichiometric compositions arising from synergistic electronic and size effects. Synthesis, crystal chemistry and electronic properties of A(14)Cd(1+x)Pn(11) compounds (0 <= x <= 0.3; A = Sr, Eu; Pn = As, Sb)
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Non-stoichiometric compositions arising from synergistic electronic and size effects. Synthesis, crystal chemistry and electronic properties of A(14)Cd(1+x)Pn(11) compounds (0 <= x <= 0.3; A = Sr, Eu; Pn = As, Sb)

机译:产生电子和尺寸协同效应的非化学计量组成。 A(14)Cd(1 + x)Pn(11)化合物(0 <= x <= 0.3; A = Sr,Eu; Pn = As,Sb)的合成,晶体化学和电子性质

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The structural variability in terms of existence of stoichiometric and nonstoichiometric compounds in the well-known "14-1-11" family has been investigated. Four such compounds, Eu14CdAs11, Sr14Cd1.06(1)As11, Eu14Cd1.27(1)Sb11, and Sr14Cd1.30(1)Sb11, synthesized by both flux and traditional solid-state methods, have been structurally characterized by single-crystal X-ray diffraction. They are all isotypic, forming with the Ca14AlSb11 structure type (Pearson code tI208, tetragonal space group I4(1)/acd). Their average structure can be described as space-filling packing of distorted [APn(6)] octahedra, [APn(5)] trigonal bipyramids, and [CdPn(4)] tetrahedra, where Pn denotes As or Sb, and A stands for Eu or Sr. Interstitial sites are partially occupied by Cd atoms, giving rise to the chemical formula A(14)Cd(1+x)Pn(11). The interstitial atom can be seen as forming a cluster, reminiscent of the empty substructure unit in the gamma-brass cluster (also known as "tetraederstern"). Robust cation-cation interactions exist in the structure and might be a natural response of the electronic structure to compensate for the apparent electron deficiency and in order to optimize the bonding interactions. The electronic structure calculations for idealized Sr14CdSb11 revealed that the Fermi level falls near the edge of the valence band, which suggests poor metallic conductivity. The analysis of the volume of coordination polyhedron and that of the Voronoi cell indicates that the content of Cd atoms in the interstitial site is limited by the available "free volume" within the complex tetrahedral unit. This free volume is induced by the instability of the hypervalent [Pn(3)](7-) anion, which in turn is related to the increasing size of pnictogen atoms, and to some extent, by the type/size of the countercations.
机译:已经研究了众所周知的“ 14-1-11”族中化学计量和非化学计量化合物的存在的结构变异性。通过助熔剂和传统固态方法合成的四种化合物Eu14CdAs11,Sr14Cd1.06(1)As11,Eu14Cd1.27(1)Sb11和Sr14Cd1.30(1)Sb11在结构上已通过单晶表征X射线衍射。它们都是同型的,形成Ca14AlSb11结构类型(Pearson代码tI208,四边形空间群I4(1)/ acd)。它们的平均结构可以描述为扭曲的[APn(6)]八面体,[APn(5)]三角双锥和[CdPn(4)]四面体的空间填充,其中Pn表示As或Sb,A表示Eu或Sr.间隙位点部分被Cd原子占据,从而产生化学式A(14)Cd(1 + x)Pn(11)。间隙原子可视为形成簇,让人联想到γ-黄铜簇中的空子结构单元(也称为“四面体”)。牢固的阳离子-阳离子相互作用存在于结构中,可能是电子结构的自然响应,以补偿表观的电子缺陷并优化键合相互作用。理想化Sr14CdSb11的电子结构计算表明,费米能级落在价带边缘附近,这表明金属导电性较差。配位多面体和Voronoi电池的体积分析表明,间隙位点中Cd原子的含量受复杂的四面体单元中可用的“自由体积”限制。这种自由体积是由高价[Pn(3)](7-)阴离子的不稳定性所诱导的,这又与光子原原子尺寸的增加有关,并在某种程度上与抗衡阳离子的类型/大小有关。

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