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Bottom-up field-directed self-assembly of magnetic nanoparticles into ordered nano- and macrostructures

机译:磁性纳米粒子的自下而上的现场导向自组装成有序纳米和大圆体结构

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摘要

Directed self-assembly of nanoparticles (NPs) is a promising strategy for bottom-up fabrication of nanostructured materials with tailored composition and morphology. Here, we present a simple and highly flexible method where charged magnetic aerosolized (i.e. suspended in a gas) NPs with tunable size and composition are self-assembled into nanostructures using combined electric and magnetic fields. Size-selected Co, Ni, and Fe NPs have been generated by spark ablation, and self-assembled into different structures, ranging from one-dimensional nanochains to macroscopic three-dimensional networks. By comparing the resulting structures with simulations, we can conclude that the magnetization of the NPs governs the self-assembly through interparticle magnetic dipole-dipole interactions. We also show how the orientation of the external magnetic field directs the self-assembly into differently aligned nano- and macroscopic structures. These results demonstrate how aerosol deposition in a combined electric and magnetic field can be used for directed bottom-up self-assembly of nanostructures with specialized composition and morphology.
机译:纳米颗粒定向自组装(NPs)是自底向上制备具有定制成分和形貌的纳米结构材料的一种很有前途的策略。在这里,我们提出了一种简单且高度灵活的方法,即使用组合电场和磁场,将具有可调大小和成分的带电磁性气溶胶(即悬浮在气体中)NPs自组装成纳米结构。通过火花烧蚀产生尺寸选择的Co、Ni和Fe纳米颗粒,并自组装成不同的结构,从一维纳米链到宏观三维网络。通过将得到的结构与模拟结果进行比较,我们可以得出这样的结论:NPs的磁化通过粒子间磁偶极-偶极相互作用控制自组装。我们还展示了外部磁场的方向如何引导自组装成不同排列的纳米和宏观结构。这些结果表明,在电场和磁场的联合作用下,气溶胶沉积可以用于定向自底向上组装具有特殊成分和形貌的纳米结构。

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