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Tunability of exchange bias in Ni@NiO core-shell nanoparticles obtained by sequential layer deposition

机译:通过连续层沉积获得的Ni @ NiO核壳纳米粒子中交换偏压的可调性

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摘要

Films of magnetic Ni@NiO core-shell nanoparticles (NPs, core diameter d congruent to 12 nm, nominal shell thickness variable between 0 and 6.5 nm) obtained with sequential layer deposition were investigated, to gain insight into the relationships between shell thickness/morphology, core-shell interface, and magnetic properties. Different values of NiO shell thickness t(s) could be obtained while keeping the Ni core size fixed, at variance with conventional oxidation procedures where the oxide shell is grown at the expense of the core. Chemical composition, morphology of the as-produced samples and structural features of the Ni/NiO interface were investigated with x-ray photoelectron spectroscopy and microscopy (scanning electron microscopy, transmission electron microscopy) techniques, and related with results from magnetic measurements obtained with a superconducting quantum interference device. The effect of the shell thickness on the magnetic properties could be studied. The exchange bias (EB) field H-bias is small and almost constant for t(s) up to 1.6 nm; then it rapidly grows, with no sign of saturation. This behavior is clearly related to the morphology of the top NiO layer, and is mostly due to the thickness dependence of the NiO anisotropy constant. The ability to tune the EB effect by varying the thickness of the last NiO layer represents a step towards the rational design and synthesis of core-shell NPs with desired magnetic properties.
机译:研究了通过连续层沉积获得的磁性Ni @ NiO核壳纳米颗粒(NP,核直径d等于12 nm,标称壳厚度在0和6.5 nm之间变化)的膜,以了解壳厚度/形态之间的关系,核-壳界面和磁性能。在保持镍芯尺寸固定的同时,可以得到不同的NiO壳厚度t(s)值,这与传统的氧化步骤有所不同,在传统的氧化步骤中,氧化物壳的生长是以牺牲芯为代价的。用X射线光电子能谱和显微镜(扫描电子显微镜,透射电子显微镜)技术研究了化学成分,所产生样品的形态和Ni / NiO界面的结构特征,并与用激光测得的磁性测量结果有关。超导量子干涉装置。可以研究壳厚度对磁性的影响。交换偏置(EB)场H偏置很小,并且对于不超过1.6 nm的t(s)几乎恒定;然后它迅速增长,没有饱和的迹象。这种行为显然与顶部NiO层的形态有关,并且主要归因于NiO各向异性常数的厚度依赖性。通过改变最后一个NiO层的厚度来调整EB效果的能力代表了合理设计和合成具有所需磁性能的核-壳NP的一步。

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