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Co nanoparticles inserted into a porous carbon amorphous matrix: The role of cooling field and temperature on the exchange bias effect

机译:钴纳米颗粒插入多孔碳无定形基质中:冷却场和温度对交换偏压效应的作用

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摘要

We report unusual cooling field dependence of the exchange bias in oxide-coated cobalt nanoparticles embedded within the nanopores of a carbon matrix. The size-distribution of the nanoparticles and the exchange bias coupling observed up to about 200 K between the Co-oxide shell (--3–4 nm) and the ferromagnetic Co-cores (--4–6 nm) are the key to understand the magnetic properties of this system. The estimated values of the effective anisotropy constant and saturation magnetization obtained from the fit of the zero-field cooling and field cooling magnetization vs. temperature curves agree quite well with those of the bulk fcc-Co.
机译:我们报道了嵌入碳基质纳米孔内的氧化物涂层钴纳米颗粒中交换偏压的不寻常冷却场依赖性。纳米粒子的尺寸分布和在Co-氧化物壳层(--3–4 nm)和铁磁Co-核(--4–6 nm)之间约200 K处观察到的交换偏压耦合是关键了解该系统的磁性。从零场冷却和场冷却磁化强度对温度曲线的拟合获得的有效各向异性常数和饱和磁化强度的估计值与整体fcc-Co的估计值非常吻合。

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