节点文献
High-pressure synthesis and sequential ferrimagnetic ordering and spin glass transition of an Fe/Ru disordered quadruple perovskite CeCu3Fe2Ru2O12
【摘要】 We successfully prepared an A-site-ordered quadruple perovskite oxide CeCu3Fe2Ru2O12 by using a high-pressure method(10 GPa, 1400 K). The compound crystallizes in the ■ space group, with A-site ordering of Ce and Cu ions in a ratio of 1:3, but B-site disordered distribution of Fe and Ru ions. Bond-value-sum calculations and x-ray photoelectron spectroscopy measurement manifest that the charge distribution is Ce3.5+Cu2+3Fe3+2Ru4.25+2O12. A ferrimagnetic phase transition occurs at TC= 73.6 K followed by a spin glass behavior at 50.3 K consistent with the conventional dynamical scaling power law. Electrical transport measurement shows that the intrinsic electrical behavior is semiconducting and the resistivity obey the adiabatic small-polaron model. The specific heat follows a T2 law instead of traditional phonondominated T3 behavior implying a finite energy gap in the excitation spectrum.
【Abstract】 We successfully prepared an A-site-ordered quadruple perovskite oxide CeCu3Fe2Ru2O12 by using a high-pressure method(10 GPa, 1400 K). The compound crystallizes in the ■ space group, with A-site ordering of Ce and Cu ions in a ratio of 1:3, but B-site disordered distribution of Fe and Ru ions. Bond-value-sum calculations and x-ray photoelectron spectroscopy measurement manifest that the charge distribution is Ce3.5+Cu2+3Fe3+2Ru4.25+2O12. A ferrimagnetic phase transition occurs at TC= 73.6 K followed by a spin glass behavior at 50.3 K consistent with the conventional dynamical scaling power law. Electrical transport measurement shows that the intrinsic electrical behavior is semiconducting and the resistivity obey the adiabatic small-polaron model. The specific heat follows a T2 law instead of traditional phonondominated T3 behavior implying a finite energy gap in the excitation spectrum.
【Key words】 A-site ordered perovskite; high pressure synthesis; magnetic properties;
- 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2026年04期
- 【分类号】TB34;O469
- 【下载频次】6