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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Size Dependence of Inter- and Intracluster Interactions in Core-Shell Iron-Iron Oxide Nanoclusters
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Size Dependence of Inter- and Intracluster Interactions in Core-Shell Iron-Iron Oxide Nanoclusters

机译:核-壳氧化铁纳米簇中簇间和簇内相互作用的大小依赖性

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摘要

The room-temperature magnetic properties of core—shell iron-iron oxide nanoclusters (NCs) synthesized by a cluster deposition system were investigated, and their dependence on mean cluster size is discussed. In this study, the surface/boundary spins of clusters were not frozen and were thermally activated during the measurements. The intercluster interactions between clusters and intracluster interactions between the iron core (ferromagnetic) and iron oxide shell (ferrimagnetic) were investigated by field-dependent isothermal remanent magnetization and dc demagnetization measurements at room temperature. The Henkel and AM plots support the existence of dipolar intercluster interactions that become stronger with the growth of the clusters. The derivative of the initial magnetization curve implies that smaller clusters require lower fields and less time than larger ones to overcome various energy barriers before saturating the moments along the field direction. Coercive field and magnetization were also correlated with the interaction parameters. To compare the room-temperature magnetic results, one system was studied at low temperature, where exchange coupling at the interface between the oxide and metallic phases was observed through bias effect and anisotropy enhancement.
机译:研究了通过团簇沉积系统合成的核-壳铁-氧化铁纳米团簇(NCs)的室温磁性能,并讨论了它们对平均团簇尺寸的依赖性。在这项研究中,簇的表面/边界自旋未冻结,在测量过程中被热激活。通过在室温下依赖于场的等温剩余磁化强度和直流去磁测量,研究了簇之间的簇间相互作用以及铁芯(铁磁)和氧化铁壳(亚铁磁)之间的簇内相互作用。汉高和AM图支持偶极子群间相互作用的存在,这种相互作用随着簇的增长而增强。初始磁化曲线的导数表明,与较大的簇相比,较小的簇需要更小的磁场和更少的时间来克服沿能量方向的力矩之前克服各种能垒。矫顽场和磁化强度也与相互作用参数相关。为了比较室温磁学结果,在低温下研究了一种系统,该系统通过偏置效应和各向异性增强观察到氧化物和金属相之间的界面处的交换耦合。

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