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Size-dependent surface effects in maghemite nanoparticles and its impact on interparticle interactions in dense assemblies

机译:磁赤铁矿纳米粒子中尺寸依赖的表面效应及其对致密组件中粒子间相互作用的影响

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The question of the dominant interparticle magnetic interaction type in random closely packed assemblies of different diameter (6.2-11.5 nm) bare maghemite nanoparticles (NPs) is addressed. Single-particle magnetic properties such as particle anisotropy and exchange bias field are first of all studied in dilute (reference) systems of these same NPs, where interparticle interactions are neglible. Substantial surface spin disorder is revealed in all particles except the smallest, viz. for diameters d = 8-11.5 nm but not for d = 6.2-6.3 nm. X-ray diffraction analysis points to a crystallographic origin of this effect. The study of closely packed assemblies of the d >= 8 nm particles observes collective (superspin) freezing that clearly appears to be governed by interparticle dipole interactions. However, the dense assemblies of the smallest particles exhibit freezing temperatures that are higher than expected from a simple (dipole) extrapolation of the corresponding temperatures found in the d >= 8 nm assemblies. It is suggested that the nature of the dominant interparticle interaction in these smaller particle assemblies is superexchange, whereby the lack of significant surface spin disorder allows this mechanism to become important at the level of interacting superspins.
机译:解决了不同直径(6.2-11.5 nm)裸露磁赤铁矿纳米颗粒(NPs)的随机紧密堆积组件中占优势的颗粒间磁性相互作用类型的问题。首先,在这些相同NP的稀(参比)系统中研究了单粒子磁特性(例如粒子各向异性和交换偏置场),其中粒子间的相互作用可忽略不计。除最小的颗粒外,所有颗粒均表现出明显的表面自旋紊乱。对于直径d = 8-11.5 nm,但对于d = 6.2-6.3 nm则不是。 X射线衍射分析指出了这种作用的晶体学起源。对d> = 8 nm粒子的紧密堆积组件的研究观察到集体(超旋)冻结,这显然似乎受粒子间偶极相互作用的控制。但是,最小颗粒的致密组件的冻结温度高于d> = 8 nm组件中相应温度的简单(偶极)外推法所预期的温度。建议在这些较小的粒子组件中,主要的粒子间相互作用的性质是超交换,因此,缺乏明显的表面自旋无序性使得该机制在相互作用的超旋转水平上变得很重要。

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