首页> 外文期刊>Applied Physics Letters >Fabrication of ordered array of nanowires of La_(0.67)Ca_(0.33)MnO_(3) (x=0.33) in alumina templates with enhanced ferromagnetic transition temperature
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Fabrication of ordered array of nanowires of La_(0.67)Ca_(0.33)MnO_(3) (x=0.33) in alumina templates with enhanced ferromagnetic transition temperature

机译:具有增强的铁磁转变温度的氧化铝模板中La_(0.67)Ca_(0.33)MnO_(3)(x = 0.33)纳米线有序阵列的制备

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We report fabrication of array of crystalline nanowires (average diameter of 65 nm) of colossal magnetoresistive oxide La_(0.67)Ca_(0.33)MnO_(3) (LCMO, x=0.33) within anodized alumina templates by filling the pores with a sol that allows formation of LCMO phase at the relatively low temperature of 600℃. The crystalline nanowires with correct stoichiometry stabilize in the orthorhombic phase at room temperature. The nanowires are ferromagnetic at room temperature and exhibit enhanced ferromagnetic transition temperature well in excess of 300 K, which is substantially higher than that of single crystalline LCMO. This enhancement we attribute to the size induced lattice contraction in the nanowires.
机译:我们报告了在阳极氧化铝模板中通过填充孔隙的溶胶来制造巨大的磁阻氧化物La_(0.67)Ca_(0.33)MnO_(3)(LCMO,x = 0.33)的晶体纳米线(平均直径为65 nm)阵列的制造。可以在相对较低的600℃温度下形成LCMO相。具有正确的化学计量比的晶体纳米线在室温下在正交晶相中稳定。纳米线在室温下是铁磁性的,并且表现出大大增强的铁磁性转变温度,超过300 K,该温度明显高于单晶LCMO的温度。我们将这种增强归因于纳米线中尺寸引起的晶格收缩。

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