Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19716, USA.
Inorg Chem. 2012 Jan 2;51(1):620-8. doi: 10.1021/ic2021484. Epub 2011 Dec 6.
This article focuses on the synthesis and the crystal chemistry of six members of a series of rare-earth metal based germanides with general formula RELiGe(2) (RE = La-Nd, Sm, and Eu). The structures of these compounds have been established by single-crystal X-ray diffraction (CaLiSi(2) structure type, space group Pnma, Z = 4, Pearson symbol oP16). The chemical bonding within this atomic arrangement can be rationalized in terms of anionic germanium zigzag chains, conjoined via chains of edge-shared LiGe(4) tetrahedra and separated by rare-earth metal cations. The structure can also be viewed as an intergrowth of AlB(2)-like and TiNiSi-like fragments, or as the result of the replacement of 50% of the rare-earth metal atoms by lithium in the parent structure of the REGe monogermanides. Except for LaLiGe(2) and SmLiGe(2), the remaining four RELiGe(2) phases exhibit Curie-Weiss paramagnetism above about 50 K. In the low temperature regime, the localized 4f electrons in CeLiGe(2), PrLiGe(2), and SmLiGe(2) order ferromagnetically, while antiferromagnetic ordering is observed for NdLiGe(2) and EuLiGe(2). The calculated effective magnetic moments confirm RE(3+) ground states in all cases excluding EuLiGe(2), in which the magnetic response is consistent with Eu(2+) configuration (J = S = 7/2). The experimental results have been complemented by tight-binding linear muffin-tin orbital (TB-LMTO) band structure calculations.
本文重点研究了一系列具有通式 RELiGe(2)(RE = La-Nd、Sm 和 Eu)的稀土金属基锗化物的合成和晶体化学。这些化合物的结构通过单晶 X 射线衍射(CaLiSi(2)结构类型,空间群 Pnma,Z = 4,Pearson 符号 oP16)确定。在这种原子排列中,化学键可以用阴离子锗锯齿链来合理化,这些锯齿链通过边缘共享的 LiGe(4)四面体链连接,并由稀土金属阳离子隔开。该结构也可以看作是 AlB(2) 型和 TiNiSi 型片段的相互生长,或者是在 REGe 单锗化物母体结构中用锂取代 50%的稀土金属原子的结果。除了 LaLiGe(2)和 SmLiGe(2),其余四个 RELiGe(2)相在 50 K 以上表现出居里-外斯顺磁体。在低温区,CeLiGe(2)、PrLiGe(2)和 SmLiGe(2)中的局域 4f 电子呈铁磁有序,而 NdLiGe(2)和 EuLiGe(2)则表现出反铁磁有序。计算出的有效磁矩证实了除 EuLiGe(2)外所有情况下的 RE(3+)基态,在 EuLiGe(2)中,磁响应与 Eu(2+)构型(J = S = 7/2)一致。实验结果得到了紧束缚线性 muffin-tin 轨道(TB-LMTO)能带结构计算的补充。