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Structure and Chemical Bonding of the Li-Doped Polar Intermetallic RE2In1−xLixGe2 (RE = La Nd Sm Gd; x = 0.13 0.28 0.43 0.53) System

机译:锂掺杂极性金属互化物RE2In1-xLixGe2(RE = LaNdSmGd; x = 0.13、0.28、0.43、0.53)系统的结构和化学键合

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摘要

Four polar intermetallic compounds belonging to the RE2In1−xLixGe2 (RE = La, Nd, Sm, Gd; x = 0.13(1), 0.28(1), 0.43(1), 0.53(1)) system have been synthesized by the traditional solid-state reaction method, and their crystal structures have been characterized by single-crystal X-ray diffraction (SXRD) analyses. The isotypic crystal structures of four title compounds adopt the Mo2FeB2-type structure having the tetragonal space group P4/mbm (Z = 2, Pearson code tP40) with three crystallographically independent atomic sites and can be simply described as a pile of the identical 2-dimensioanl (2D) RE2In1-xLixGe2 slabs stacked along the c-axis direction. The substituting Li atom shows a particular site preference for replacing In at the Wyckoff 2a site rather than Ge at the Wyckoff 4g in this crystal structure. As the size of a used rare-earth metal decreases from La3+ to Gd3+ throughout the title system, the Ge-Ge and Ge-In/Li bond distances, both of which consist of the 2D anionic Ge2(In/Li) layer, gradually decrease resulting in the reduction of a unit cell volume. A series of theoretical investigations has been performed using a hypothetical structure model Gd2In0.5Li0.5Ge2 by tight-binding linear muffin-tin orbital (TB-LMTO) method. The resultant densities of states (DOS) value at the Fermi level (EF) suggests a metallic conductivity for this particular composition, and this calculation result is in a good agreement with the formal charge distribution assigning two extra valence electrons for a metal-metal bond in the conduction band. The thorough analyses of six crystal orbital Hamilton population (COHP) curves representing various interatomic interactions and an electron localization function (ELF) diagram indicating the locations of paired-electron densities are also provided in this article.
机译:传统方法已合成了四个属于RE2In1-xLixGe2的极性金属间化合物(RE = La,Nd,Sm,Gd; x = 0.13(1),0.28(1),0.43(1),0.53(1))系统。固态反应方法及其晶体结构已通过单晶X射线衍射(SXRD)分析进行了表征。四个标题化合物的同型晶体结构采用Mo2FeB2型结构,该结构具有四方空间群P4 / mbm(Z = 2,皮尔逊代码tP40),具有三个晶体学独立的原子位点,可以简单地描述为一堆相同的2-沿c轴方向堆叠的dimensioanl(2D)RE2In1-xLixGe2平板。在该晶体结构中,取代的Li原子显示出在Wyckoff 2a位点取代In而不是在Wyckoff 4g位取代Ge的特定位点偏好。随着整个标题系统中使用的稀土金属的尺寸从La 3 + 减小到Gd 3 + ,Ge-Ge和Ge-In / Li键距,这两个都由2D阴离子Ge2(In / Li)层组成,逐渐减小,导致晶胞体积减小。通过紧密结合的线性松饼-锡轨道(TB-LMTO)方法,使用假设结构模型Gd2In0.5Li0.5Ge2进行了一系列理论研究。在费米能级( E F)上得到的态密度(DOS)值表明该特定成分具有金属电导率,并且此计算结果与形式电荷分配分配了两个额外的导带中金属与金属键的价电子。本文还提供了对代表各种原子间相互作用的六种晶体轨道汉密尔顿人口(COHP)曲线和指示配对电子密度位置的电子本地化功能(ELF)图的详尽分析。

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