National Synchrotron Radiation Research Center, Hsinchu 30076, Taiwan.
Phys Chem Chem Phys. 2015 Sep 28;17(36):23667-73. doi: 10.1039/c5cp03340c.
Quantitative structural parameters of pyrochlore Nd2Ru2O7, with temperature dependence, have been derived upon fitting XRD and EXAFS data. An anomalous expansion of the lattice parameter and the Ru-O bond length indicates a structural instability at low temperatures; in particular, an increase in the non-thermal term of the mean square fluctuation in the bond length is the evidence for a static disorder of Ru atoms. This static disorder is closely correlated with a decrease in the average Ru-O-Ru bond angle with decreasing temperature, favoring the short-range ferromagnetic coupling in the material. This ferromagnetic coupling formed thus triggered the spin frustration at low temperature when the contradictory constraints of antiferromagnetic interaction act upon the same Ru site in the corner-sharing tetrahedrons of pyrochlore Nd2Ru2O7. This study demonstrates that the spin frustration arising from the competition of ferromagnetic/antiferromagnetic interactions in pyrochlore Nd2Ru2O7 will cause structural instability especially on the atomic scale, which provides a new point of view to help understand its particular magnetic state.
通过拟合 XRD 和 EXAFS 数据,得出了具有温度依赖性的烧绿石 Nd2Ru2O7 的定量结构参数。晶格参数和 Ru-O 键长的反常膨胀表明低温下结构不稳定;特别是,键长的均方根涨落的非热项的增加为 Ru 原子的静态无序提供了证据。这种静态无序与平均 Ru-O-Ru 键角随温度降低而减小密切相关,有利于材料中短程铁磁耦合。这种铁磁耦合的形成触发了低温下的自旋受挫,当反铁磁相互作用的矛盾约束作用于烧绿石 Nd2Ru2O7 的顶角共享四面体中的相同 Ru 位时,就会发生自旋受挫。这项研究表明,来自于烧绿石 Nd2Ru2O7 中铁磁/反铁磁相互作用竞争的自旋受挫将导致结构不稳定,特别是在原子尺度上,这为帮助理解其特殊的磁态提供了一个新的视角。