论文标题
局部晶格障碍降低对B位替代LA0.8SR0.2MNO3的磁性特性的影响
Effect of reduced local lattice disorder on the magnetic properties of B-site substituted La0.8Sr0.2MnO3
论文作者
论文摘要
在混合价钙钛矿锰矿中经常观察到由化学不均匀性和Jahn-Teller(JT)扭曲引起的疾病。这种疾病进化的主要原因与阳离子大小差异以及JT活性和非JT活性离子之间的比率有关。淬火障碍导致磁性转变温度以上的自旋簇状态。在这里已经解决了Cu,LA0.8SR0.2MNO3化合物中B位替代的影响,在此处解决了无序阶段。 X射线粉末衍射揭示了两种化合物的菱形(R-3C)结构,其晶格量可以忽略不计。通过离子束分析技术验证了两种化合物的化学成分。随着电子带宽的变化,磁相变温温度已调整为室温(318 K),这是室温磁制冷的重要要求。然而,与饱和磁化的减少有关,观察到均匀熵的等温熵的少量减小。
Disorder induced by chemical inhomogeneity and Jahn-Teller (JT) distortions is often observed in mixed valence perovskite manganites. The main reasons for the evolution of this disorder are connected with the cationic size differences and the ratio between JT active and non-JT active ions. The quenched disorder leads to a spin-cluster state above the magnetic transition temperature. The effect of Cu, a B-site substitution in the La0.8Sr0.2MnO3 compound, on the disordered phase has been addressed here. X-ray powder diffraction reveals rhombohedral (R-3c) structures for the two compounds with negligible change of lattice volume. The chemical compositions of the two compounds were verified by ion beam analysis technique. With the change of electronic bandwidth, the magnetic phase transition temperature has been tuned towards room temperature (318 K), an important requirement for room temperature magnetic refrigeration. However, a small decrease of the isothermal entropy was observed with Cu-substitution, related to the decrease of the saturation magnetization.