Mao Jiang-Gao, Goodey Joanna, Guloy Arnold M
Department of Chemistry and the Texas Center for Superconductivity, University of Houston, Houston, Texas 77204-5641, USA.
Inorg Chem. 2002 Feb 25;41(4):931-7. doi: 10.1021/ic0102891.
Two new isostructural Zintl phases, EuInGe and SrInGe, are obtained from high-temperature reactions of the pure elements in welded Ta tubes. Both ternary phases crystallize in a new structure type in space group Pnma (No. 62), with a = 4.921(1) A, b = 3.9865(9) A, and c = 16.004(3) A for EuInGe; and a = 5.021(1) A, b = 4.0455(9) A, and c = 16.188(4) A for SrInGe. The crystal structures established by single-crystal X-ray diffraction feature zigzag chains of 3-bonded Ge atoms and puckered layers of 4-bonded In atoms. The two structural units are linked into an anionic network with channels composed of 5-membered and 7-membered rings. The channels are filled by the respective divalent cations. The chemical bonding of the anionic InGe(-) network, derived from a one-electron oxidative distortion of the alpha-ThSi(2) structure, is explained using extended-Hückel band structure calculations. Magnetic measurements indicate that EuInGe exhibits Curie-Weiss paramagnetic behavior above 35 K and antiferromagnetic behavior below 35 K. The calculated effective moment, mu(eff) = 8.11 mu(B), of EuInGe and the diamagnetic behavior of SrInGe are consistent with the oxidation states of Eu(II) and Sr(II), respectively.
通过在焊接钽管中纯元素的高温反应,获得了两种新的同构Zintl相,EuInGe和SrInGe。这两种三元相都结晶为空间群Pnma(编号62)中的一种新结构类型,对于EuInGe,a = 4.921(1) Å,b = 3.9865(9) Å,c = 16.004(3) Å;对于SrInGe,a = 5.021(1) Å,b = 4.0455(9) Å,c = 16.188(4) Å。通过单晶X射线衍射确定的晶体结构具有由三键合Ge原子组成的锯齿链和由四键合In原子组成的褶皱层。这两个结构单元连接成一个带有由五元环和七元环组成通道的阴离子网络。通道由各自的二价阳离子填充。使用扩展Hückel能带结构计算解释了源自α-ThSi₂结构单电子氧化畸变的阴离子[InGe]²⁻网络的化学键合。磁性测量表明,EuInGe在35 K以上表现出居里-外斯顺磁行为,在35 K以下表现出反铁磁行为。EuInGe计算得到的有效磁矩μ(eff) = 8.11 μB以及SrInGe的抗磁行为分别与Eu(II)和Sr(II)的氧化态一致。