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Distinguishing the core from the shell in MnO x/MnO y and FeO x/MnO x core/shell nanoparticles through quantitative electron energy loss spectroscopy (EELS) analysis

机译:通过定量电子能量损失谱(EELS)分析区分MnO x / MnO y和FeO x / MnO x核/壳纳米颗粒中的核与壳

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摘要

The structural and chemical characterization of inverted bi-magnetic MnO x(antiferromagnetic)/MnO y(ferrimagnetic) and FeO x(soft-ferrimagnetic)/MnO x(hard-ferrimagnetic) core/shell nanoparticles has been carried out by means of scanning transmission electron microscopy with electron energy loss spectroscopy analysis, (S)TEM-EELS. Quantitative EELS was applied to assess the local composition of the nanoparticles by evaluating the local Mn oxidation state based on the Mn L 3/L 2 peak intensity ratio and the Mn L 3 peak onset. The analysis allows to unambiguously distinguish the core from the shell and to determine the nature of the involved manganese oxides in both cases. The results evidence that the structure of the nanoparticles is, in fact, more complex than the one designed by the synthesis parameters. 2011 Elsevier Ltd.
机译:通过扫描透射法对倒双磁MnO x(反铁磁性)/ MnO y(亚铁磁性)和FeO x(软亚铁磁性)/ MnO x(硬亚铁磁性)核/壳纳米粒子进行了结构和化学表征具有电子能量损失光谱分析的电子显微镜(S)TEM-EELS。通过基于Mn L 3 / L 2峰强度比和Mn L 3峰起始点评估局部Mn氧化态,应用定量EELS评估纳米颗粒的局部组成。该分析可以明确区分核与壳,并确定两种情况下所涉及的锰氧化物的性质。结果证明,纳米粒子的结构实际上比通过合成参数设计的纳米粒子更复杂。 2011爱思唯尔有限公司

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