首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Magnesium Substitutions in Rare-Earth Metal Germanides with the Orthorhombic Gd5Si4-type Structure. Synthesis, Crystal Chemistry, and Magnetic Properties of RE5-xMgxGe4 (RE = Gd-Tm, Lu, and Y)
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Magnesium Substitutions in Rare-Earth Metal Germanides with the Orthorhombic Gd5Si4-type Structure. Synthesis, Crystal Chemistry, and Magnetic Properties of RE5-xMgxGe4 (RE = Gd-Tm, Lu, and Y)

机译:具有正交晶系Gd5Si4型结构的稀土金属锗化物中的镁取代。 RE5-xMgxGe4(RE = Gd-Tm,Lu和Y)的合成,晶体化学和磁性

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摘要

A series of magnesium-substituted rare-earth metal germanides with a general formula RE5-xMgxGe4 (x approximate to 1.0-2.3; RE = Gd-Tm, Lu, Y) have been synthesized by high-temperature reactions and structurally characterized by single-crystal X-ray diffraction, These compounds crystallize with the common Gd5Si4 type structure in the orthorhombic space group Pnma (No. 62; Z = 4; Pearson's code oP36) and do not appear to undergo temperature-induced crystallographic phase transitions down to 120 K. Replacing rare-earth metal atoms with Mg, up to nearly 45% at., reduces the valence electron count and is clearly expressed in the subtle changes of the Ge-Ge and metal-metal bonding. Magnetization measurements as a function of the temperature and the applied field reveal complex magnetic structures at cryogenic temperatures and Curie-Weiss paramagnetic behavior at higher temperatures. The observed local moment magnetism is consistent with RE3+ ground states in all cases. In the magnetically ordered phases, the magnetization cannot reach saturation in fields up to 50 kOe. The structural trends across the series and the variations of the magnetic properties as a function of the Mg content are also discussed.
机译:通过高温反应合成了一系列通式为RE5-xMgxGe4(x约为1.0-2.3; RE = Gd-Tm,Lu,Y)的镁取代稀土金属锗化物,其结构特征为单晶体X射线衍射,这些化合物在正交晶空间群Pnma(No。62; Z = 4; Pearson编码oP36)中具有常见的Gd5Si4型结构结晶,并且似乎未经历低至120 K的温度诱导晶体相变用高达约45%at。的Mg代替稀土金属原子,可减少价电子数,并清楚地以Ge-Ge和金属-金属键的细微变化表示。磁化强度随温度和外加磁场的变化,揭示出低温下的复杂磁性结构以及高温下的居里-魏斯顺磁行为。在所有情况下,观察到的局部矩磁都与RE3 +基态一致。在磁有序相中,在高达50 kOe的磁场中磁化不能达到饱和。还讨论了整个系列的结构趋势以及磁性能随Mg含量的变化。

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