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用固相反应法制备(1-x)La0.6Dy0.1Sr0.3MnO3/x/2(Sb2O3)(x=0.00,0.02,0.15)样品,通过X射线衍射(XRD)图谱,扫描电子显微镜(SEM)照片及SEM能谱(EDS),p~T曲线研究样品的结构及电输运性质.结果表明:Sb离子没有进入Mn位,Sb2O3包覆在La0.6Dy0.1Sr0.3MnO3颗粒表面,Sb2O3起助熔剂作用,使得复合样品的颗粒变大且大小相对均匀;复合样品的绝缘体-金属转变温度B较纯的La0.6Dy0.1Sr0.3MnO3的TP提高20K左右,对x=0.15的样品电阻高峰值比纯的La0.6Dy0.1Sr0.3MnO3的峰值电阻率增大两个数量级,用自旋极化隧穿理论予以解释.

Polycrystalline samples of (1-x)La0.6Dy0.1Sr0.3MnO3/x/2(Sb2O3) (x=0. 00, 0. 02, 0. 15) were prepared by the solid state reaction method, and their structure and electrical transport properties were studied through the analysis of X-ray diffraction (XRD) patterns, scanning electron microscopy (SEM) photographs, SEM spectroscopy (EDS), and resistivity-temperature (puT) curves. The results indicate that: Sb ions do not enter the Mn site, Sb2O3 covers the grain surface Of La0.6Dy0.1Sr0.3MnO3, and it acts as a flux and makes the composite grains have larger and comparatively uniform size; the insulator-metal transition temperature Tv of composite samples is about 20K higher than that of pure La0.6Dy0.1Sr0.3MnO3, the resistivty peak value of the sample of x = 0. 15 is two orders of magnitude higher than that of pure La0. 6 Dy0.1 Sr0. 3 MnO3, and this can be explained by the spin polarized tunneling mechanism.

参考文献

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