K3YbSi2O7的低温相变和磁性能

Predrag Dabić, V. Kahlenberg, Biljana Krüger, M. Rodić, Sabina Kovač, J. Blanuša, Z. Jagličić, L. Karanović, V. Petříček, A. Kremenović
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摘要

采用高温通量法合成了新型室温六方(空间群P63 /mmc)二硅酸三钾(β-K3YbSi2O7)晶型,并对其进行了结构表征。在温度相关的单晶衍射实验中,在210 K左右观察到β-K3YbSi2O7相变为一种新的低温正交相(β ' -K3YbSi2O7,空间群Cmcm)。β-K3YbSi2O7与K3ErSi2O7是同质结构,而β ' -K3YbSi2O7是一种新型结构。这两种化合物都可以通过与(001)平面平行的两种类型的层的规则交替来构建。在八面体层中,YbO6八面体被k106 +3多面体隔离连接。第二层稍厚的硅溶胶层是由Si2O7二聚体和K2O6+3多面体组合而成。层与层之间的边界为基于3.6.3.6网格的伪氧化木片。相变是由于两个SiO4四面体的倾斜形成一个二聚体,导致桥接Si-O键之间的Si-O - si角从180°(由P63/mmc空间群的对称性决定)减小到≃164°。磁性表征表明,K3YbSi2O7在2 K以下仍保持顺磁性,相变对其磁性没有明显影响。通过对磁化数据的分析,得到了Yb3+阳离子的三个最低晶体场能级的位置,以及它们的角动量在磁场方向上的对应投影。
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Low-temperature phase transition and magnetic properties of K3YbSi2O7
The new ambient-temperature hexagonal (space group P63 /mmc) polymorph of tripotassium ytterbium(III) disilicate (β-K3YbSi2O7) has been synthesized by the high-temperature flux method and subsequently structurally characterized. In the course of the temperature-dependent single-crystal diffraction experiments, a phase transformation of β-K3YbSi2O7 to a novel low-temperature orthorhombic phase (β′-K3YbSi2O7, space group Cmcm) has been observed at about 210 K. β-K3YbSi2O7 is isostructural with K3ErSi2O7, whereas β′-K3YbSi2O7 adopts a new type of structure. Both compounds can be built up from a regular alternation of layers of two types, which are parallel to the (001) plane. In the octahedral layer, YbO6 octahedra are isolated and linked by K1O6+3 polyhedra. The second, slightly thicker sorosilicate layer is formed by a combination of Si2O7 dimers and K2O6+3 polyhedra. The boundary between the layers is a pseudo-kagome oxide sheet based on 3.6.3.6 meshes. The phase transition is due to a tilt of the two SiO4 tetrahedra forming a single dimer which induces a decrease of the Si—O—Si angle between bridging Si—O bonds from 180° (dictated by symmetry in space group P63/mmc) to ≃164°. Magnetic characterization indicates that K3YbSi2O7 remains paramagnetic down to 2 K, showing no apparent influence of the phase transformation on its magnetic properties. Analysis of the magnetization data revealed the positions of the three lowest crystal field levels of the Yb3+ cations, as well as the corresponding projections of their angular momentum on the direction of the magnetic field.
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