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Assembly of magnetic nanoparticles into higher structures on patterned magnetic beads under the influence of magnetic field

机译:在磁场的影响下,磁性纳米粒子在图案化的磁珠上组装成更高的结构

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The self-assembly of nanoparticles into higher organizations in a controlled manner has critical importance for the utility of the unique properties of nanoparticles. The behavior of magnetic Fe3O4 nanoparticles (MNPs) with an average size of 6 nm under an enhanced magnetic force is reported. Upon evaporation of the solvent where the MNPs are suspended, formation of unique micrometer-sized structures is achieved only when there is a patterned surface constructed from sub-micrometer size magnetic beads in between the applied magnetic field and the MNPs. The preliminary results indicate that the combined effect of magnetic field and evaporation rate might help the control of nanoparticle behavior on surfaces and interfaces in constructing higher structures.
机译:纳米颗粒以受控方式自组装成更高的组织对于纳米颗粒独特性能的应用至关重要。报告了在增强的磁力下平均粒径为6 nm的磁性Fe3O4纳米粒子(MNP)的行为。在将MNP悬浮的溶剂蒸发后,只有当在施加的磁场和MNP之间存在由亚微米大小的磁珠构成的图案化表面时,才能形成独特的微米大小的结构。初步结果表明,磁场和蒸发速率的综合作用可能有助于控制纳米颗粒在构建更高结构的表面和界面上的行为。

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