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锂金属原子填充在I型包合物的锗网络中的空位:BaLiGe的合成与结构表征

Lithium metal atoms fill vacancies in the germanium network of a type-I clathrate: synthesis and structural characterization of BaLiGe.

作者信息

Ghosh Kowsik, Ovchinnikov Alexander, Baitinger Michael, Krnel Mitja, Burkhardt Ulrich, Grin Yuri, Bobev Svilen

机构信息

Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19716, USA.

Faculty of Chemistry and Food Chemistry, Technische Universität Dresden, 01062 Dresden, Germany.

出版信息

Dalton Trans. 2023 Aug 1;52(30):10310-10322. doi: 10.1039/d3dt01168b.

Abstract

Clathrate phases with crystal structures exhibiting complex disorder have been the subject of many prior studies. Here we report syntheses, crystal and electronic structure, and chemical bonding analysis of a Li-substituted Ge-based clathrate phase with the refined chemical formula BaLiGe, which is a rare example of ternary clathrate-I where alkali metal atoms substitute framework Ge atoms. Two different synthesis methods to grow single crystals of the new clathrate phase are presented, in addition to the classical approach towards polycrystalline materials by combining pure elements in desired stoichiometric ratios. Structure elucidations for samples from different batches were carried out by single-crystal and powder X-ray diffraction methods. The ternary BaLiGe phase crystallizes in the cubic type-I clathrate structure (space group 3̄ no. 223, ≈ 10.80 Å), with the unit cell being substantially larger compared to the binary phase BaGe (Ba□Ge, ≈ 10.63 Å). The expansion of the unit cell is the result of the Li atoms filling vacancies and substituting atoms in the Ge framework, with Li and Ge co-occupying one crystallographic (6) site. As such, the Li atoms are situated in four-fold coordination environment surrounded by equidistant Ge atoms. Analysis of chemical bonding applying the electron density/electron localizability approach reveals ionic interaction of barium with the Li-Ge framework, while the lithium-germanium bonds are strongly polar covalent.

摘要

具有呈现复杂无序晶体结构的笼形相一直是许多先前研究的主题。在此,我们报告了一种锂取代的锗基笼形相的合成、晶体和电子结构以及化学键分析,其精确化学式为BaLiGe,这是三元笼形I的一个罕见例子,其中碱金属原子取代了骨架锗原子。除了通过将纯元素按所需化学计量比组合来制备多晶材料的经典方法外,还介绍了两种生长新笼形相单晶的不同合成方法。通过单晶和粉末X射线衍射方法对不同批次的样品进行了结构解析。三元BaLiGe相结晶为立方I型笼形结构(空间群3̄,编号223,≈10.80 Å),与二元相BaGe(Ba□Ge,≈10.63 Å)相比,其晶胞明显更大。晶胞的扩大是锂原子填充空位并取代锗骨架中原子的结果,锂和锗共同占据一个晶体学(6)位点。因此,锂原子位于由等距锗原子包围的四重配位环境中。应用电子密度/电子局域化方法进行的化学键分析表明,钡与锂-锗骨架存在离子相互作用,而锂-锗键是强极性共价键。

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