Götzfried Thomas, Reller Armin, Ebbinghaus Stefan G
Lehrstuhl für Festkörperchemie, Institut für Physik, Universität Augsburg, Universitätsstrasse 1, D-86159 Augsburg, Germany.
Inorg Chem. 2005 Sep 19;44(19):6550-7. doi: 10.1021/ic050511s.
The structures of the new compound La(1.2)Sr(2.7)IrO(7.33) and the recently discovered La(1.2)Sr(2.7)RuO(7.33) have been solved using a combination of X-ray and neutron diffraction. Both compounds crystallize in the trigonal space group Rm and consist of isolated MO6 (M = Ru, Ir) octahedra, which are arranged in well-defined hexagonal perovskite slabs. These slabs are separated by (Sr2O(1+delta)) layers containing both O2- and (O2)2- ions. The composition can therefore be written as La(1.2)Sr(2.7)MO(7-delta)(O2)delta with delta = 0.33. Results of the magnetic susceptibility and XANES measurements show that the transition metal cations are in a pentavalent state. While in La(1.2)Sr(2.7)RuO(7.33) an antiferromagnetic interaction between the Ru5+ ions is found, La(1.2)Sr(2.7)IrO(7.33) shows a very small temperature-independent paramagnetism down to 1.8 K due to the strong spin-orbit coupling characteristic for the 5d element iridium.
新化合物La(1.2)Sr(2.7)IrO(7.33)以及最近发现的La(1.2)Sr(2.7)RuO(7.33)的结构已通过X射线和中子衍射相结合的方法解析出来。这两种化合物都结晶于三方空间群Rm,由孤立的MO6(M = Ru,Ir)八面体组成,这些八面体排列在定义明确的六方钙钛矿板中。这些板由包含O2-和(O2)2-离子的(Sr2O(1+δ))层隔开。因此,其组成可写成La(1.2)Sr(2.7)MO(7-δ)(O2)δ,其中δ = 0.33。磁化率和X射线吸收近边结构(XANES)测量结果表明,过渡金属阳离子处于五价态。虽然在La(1.2)Sr(2.7)RuO(7.33)中发现Ru5+离子之间存在反铁磁相互作用,但由于5d元素铱具有很强的自旋轨道耦合特性,La(1.2)Sr(2.7)IrO(7.33)在低至1.8 K时显示出非常小的与温度无关的顺磁性。