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Assembly of nanocube super-structures directed by surface and magnetic interactions

机译:组装nanocube上部结构由表面和磁相互作用

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摘要

We study the stabilisation of clusters and lattices of cuboidal particles with long-ranged magnetic dipolar and short-ranged surface interactions. Two realistic systems were considered: one with magnetisation oriented in the [001] crystallographic direction and the other with magnetisation along the [111] direction. We have studied magnetic nanocube clusters first in the limit ofT= 0 K intending to elucidate the structural genesis of low energy configurations and then analysed finite-temperature behaviour of the same systems in simulations. Our results demonstrate that dipolar coupling can stabilise nanoparticle assemblies with cubic, planar, and linear arrangements seen previously in experiments. While attractive surface energy supports the formation of super-cubes, repulsion results in the elongated structures in the form of rods and chains. We observe the stabilisation of the ferromagnetic planar arrangements of the cubes standing on their corners and in contact over edges. We illustrate that minimal energy structures depend only on the size of the assembly and balance of surface repulsion and magnetic dipolar coupling. The presented results are scalable to different particle sizes and material parameters.
机译:我们研究集群和稳定的格与长程的立方形的粒子磁偶极和短程的表面交互。认为:一个面向与磁化[001]的晶体和方向其他与磁化强度沿[111]方向。集群中的第一个限制ofT = 0 K的打算阐明低能量的结构成因配置,然后分析有限温度下相同的系统的行为在模拟。偶极耦合可以稳定纳米颗粒程序集与立方、平面和线性的先前出现在实验安排。而有吸引力的表面能支持形成super-cubes,排斥的结果棒的细长的结构形式链。铁磁立方体的平面安排站在角落,在联系边缘。结构的大小只取决于装配和表面斥力和平衡磁偶极耦合。对不同粒径和可伸缩的材料参数。

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