首页> 外文期刊>Journal of Electronic Materials >Colossal Magnetoresistance in Sol-Gel Derived Epitaxial Thin Film of Co-Doped La↓(1-x) Ca↓(x) MnO↓(x)
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Colossal Magnetoresistance in Sol-Gel Derived Epitaxial Thin Film of Co-Doped La↓(1-x) Ca↓(x) MnO↓(x)

机译:共掺杂La↓(1-x)Ca↓(x)MnO↓(x)的Sol-Gel外延薄膜中的巨磁电阻

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摘要

Electrical, magnetic, and magnetotransport properties of sol-gel derived epitaxial thin films of Co-doped La↓(1-x)Ca↓(x)MnO↓(3) are reported. The epitaxial thin films, deposited using metal-salt routed sol-gel processing, show excellent quality of epitaxy (FWHM = 0.3°), Their surface roughness is about 30# and average grain size is 500#. The thin films exhibit the typical behavior of colossal magnetoresistive oxide, manifesting paramagnetic semiconductor to ferromagnetic metal transition near magnetic transition. The doping of Co reduces electrical conductivity, Curie temperature (T↓(c)) and saturation magnetization (M↓(s)). However, the peak magnetoresistance ratio does not show a monotonous change with increasing Co content. These results are interpreted by spin-disorder scattering, magnetic inhomogeneity, and lattice distortion.
机译:报道了Co-掺杂的La↓(1-x)Ca↓(x)MnO↓(3)的溶胶-凝胶衍生的外延薄膜的电,磁和磁传输性质。采用金属盐路由溶胶-凝胶工艺沉积的外延薄膜具有优异的外延质量(FWHM = 0.3°),其表面粗糙度约为30#,平均晶粒尺寸为500#。薄膜表现出巨大的磁阻氧化物的典型行为,表现出顺磁性半导体到铁磁性金属的转变接近磁性转变。 Co的掺杂会降低电导率,居里温度(T↓(c))和饱和磁化强度(M↓(s))。但是,随着Co含量的增加,峰值磁阻比不会出现单调变化。这些结果由自旋无序散射,磁不均匀性和晶格畸变来解释。

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