论文标题

对交换的耦合磁性fe(3-delta)o4@cofe2o4@fe(3-delta)O4纳米颗粒的洋葱结构的详细研究

A Detailed Investigation of the Onion Structure of Exchanged Coupled Magnetic Fe(3-delta)O4@CoFe2O4@Fe(3-delta)O4 Nanoparticles

论文作者

Sartori, Kevin, Musat, Anamaria, Choueikani, Fadi, Grenèche, Jean Marc, Hettler, Simon, Bencok, Peter, Begin-Colin, Sylvie, Steadman, Paul, Arenal, Raul, Pichon, Benoit P.

论文摘要

组合几个磁相的纳米颗粒(NP),由于其磁性具有很高的模块化,可为尖端应用提供广泛的视角。除了在每个阶段添加固有的磁特性外,还来自核心壳产生的界面,此外,洋葱结构从洋葱结构中导致了诸如磁交换耦合之类的协同特性。这种现象具有很高的兴趣,可以克服氧化铁NP的超顺磁极限,从而阻碍潜在的应用。在此手稿中,我们报告了具有类似洋葱的结构的NP的设计,这些结构尚未报道。这些NP由Fe(3_delta)O4核心组成,该核心由COFE2O4的第一个外壳和Fe(3-戴尔塔)O4的第二个外壳组成。它们是通过多步种子介导的生长方法合成的。尽管TEM显微照片清楚地表明了每个壳体从氧化铁核心的生长,但核心尺寸和壳厚度与大小增加所建议的明显不同。我们非常准确地研究了NP在执行高分辨率(扫描)TEM成像和GPA时的结构。鳗鱼研究了原子的化学成分和空间分布。通过Mössbauer光谱法,软XAS和XMCD研究了阳离子的化学环境和氧化态。这些技术使我们能够估计芯@壳结构的氧化铁核心中Fe2+含量的增加,以及核心壳@壳@壳@壳的钴铁岩壳厚度的增加,而氧化铁壳似乎比预期的要薄得多。因此,化学成分以及Fe(3-Delta)O4核的大小以及钴铁岩壳的厚度对磁性特性具有很高的影响。此外,氧化铁壳的生长还显着修饰了核壳NP的磁性。

Nanoparticles (NPs) which combine several magnetic phases offer wide perspectives for cutting edge applications because of the high modularity of their magnetic properties. Besides the addition of the magnetic characteristics intrinsic to each phase, the interface that results from core-shell and, further, from onion structures leads to synergistic properties such as magnetic exchange coupling. Such a phenomenon is of high interest to overcome the superparamagnetic limit of iron oxide NPs which hampers potential applications. In this manuscript, we report on the design of NPs with an onion-like structure which have been scarcely reported yet. These NPs consist in a Fe(3_delta)O4 core covered by a first shell of CoFe2O4 and a second shell of Fe(3-delta)O4. They were synthesized by a multi-step seed mediated growth approach. Although TEM micrographs clearly show the growth of each shell from the iron oxide core, core sizes and shell thicknesses markedly differ from what is suggested by the size increase. We investigated very precisely the structure of NPs in performing high resolution (scanning) TEM imaging and GPA. The chemical composition and spatial distribution of atoms were studied by EELS. The chemical environment and oxidation state of cations were investigated by Mössbauer spectrometry, soft XAS and XMCD. These techniques allowed us to estimate the increase of Fe2+ content in the iron oxide core of the core@shell structure and the increase of the cobalt ferrite shell thickness in the core@shell@shell one, while the iron oxide shell appears to be much thinner than expected. Thus, the modification of the chemical composition as well as the size of the Fe(3-delta)O4 core and the thickness of the cobalt ferrite shell have a high impact on the magnetic properties. Furthermore, the growth of the iron oxide shell also markedly modifies the magnetic properties of the core-shell NPs.

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