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Functional magnetic nanoparticle assemblies: Formation, collective behavior, and future directions

机译:功能性磁性纳米粒子组件:形成,集体行为和未来方向

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This Perspective describes recent progress in the development of functional magnetic nanoparticle assemblies. After describing the formation of two- and three-dimensional particle arrays in terms of the size-dependent driving forces, we focus on magnetic nanoparticle arrays. We discuss how the self-organized structure can modify the magnetic behavior, relative to that of isolated particles. We highlight an important development, described in this issue of ACS Nano by Kostiainen and co-workers, who have demonstrated not only the novel aqueous self-assembly of magnetic particles but also controlled and reversible disassembly. Finally, we explore two inter-related future directions for self-assembly of magnetic nanoparticles: the formation of more complex, hierarchical structures and the integration of self-assembly with fabrication techniques for electronic devices.
机译:本观点介绍了功能性磁性纳米粒子组件开发的最新进展。在根据尺寸相关的驱动力描述了二维和三维粒子阵列的形成之后,我们将重点放在磁性纳米粒子阵列上。我们将讨论自组织结构如何相对于孤立的粒子改变磁行为。我们强调了一个重要的发展,由Kostiainen及其同事在本期ACS Nano中进行了描述,他们不仅证明了磁性粒子的新型水基自组装,而且还证明了可控和可逆的分解。最后,我们探索了磁性纳米粒子自组装的两个相互关联的未来方向:更复杂,层次结构的形成以及自组装与电子设备制造技术的集成。

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