Smetana Volodymyr, Kienle Lorenz, Duppel Viola, Simon Arndt
Max-Planck-Institut für Festkörperforschung , Heisenbergstrasse 1, D-70569 Stuttgart, Germany.
Inorg Chem. 2015 Feb 2;54(3):733-9. doi: 10.1021/ic5010165. Epub 2014 Jun 27.
Two intermetallic phases in the Sr-Li system have been synthesized and structurally characterized. According to single-crystal X-ray diffraction data, Sr(19)Li(44) and Sr(3)Li(2) crystallize with tetragonal unit cells (Sr(19)Li(44), I-42d, a = 15.9122(7) Å, c = 31.831(2) Å, Z = 4, V = 8059(2) Å(3); Sr(3)Li(2), P42/mnm, a = 9.803(1) Å, c = 8.784(2) Å, Z = 4, V = 844.2(2) Å(3)). The first compound is isostructural with the recently discovered Ba(19)Li(44). Sr in Sr(19)Li(44) can be fully replaced by Ba with no changes to the crystal structure, whereas the substitution of Sr by Ca is only possible within a limited concentration range. Sr(3)Li(2) can be assigned to the Al(2)Zr(3) structure type. The crystal structure determination of Sr(19)Li(44) was complicated by multiple twinning. As an experimental highlight, an electron microscopy investigation of the highly moisture- and electron-beam-sensitive crystals was performed, enabling high-resolution imaging of the defect structure.
已合成并对Sr-Li体系中的两个金属间相进行了结构表征。根据单晶X射线衍射数据,Sr(19)Li(44)和Sr(3)Li(2)以四方晶胞结晶(Sr(19)Li(44),I-42d,a = 15.9122(7) Å,c = 31.831(2) Å,Z = 4,V = 8059(2) ų;Sr(3)Li(2),P42/mnm,a = 9.803(1) Å,c = 8.784(2) Å,Z = 4,V = 844.2(2) ų)。第一种化合物与最近发现的Ba(19)Li(44)同构。Sr(19)Li(44)中的Sr可被Ba完全取代而不改变晶体结构,而用Ca取代Sr仅在有限的浓度范围内可行。Sr(3)Li(2)可归属于Al(2)Zr(3)结构类型。Sr(19)Li(44)的晶体结构测定因多重孪晶而变得复杂。作为一个实验亮点,对高度吸湿且对电子束敏感的晶体进行了电子显微镜研究,从而能够对缺陷结构进行高分辨率成像。