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Smart Materials by Nanoscale Magnetic Assembly

机译:纳米级磁性组装的智能材料

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Magnetic assembly at the nanoscale level holds great potential for producing smart materials with high functional and structural diversity. Generally, the chemical, physical, and mechanical properties of the resulting materials can be engineered or dynamically tuned by controlling external magnetic fields. This Review analyzes the recent research progress on nanoscale magnetic assembly approaches toward the development of smart materials. The magnetic interactions between nanoparticles (both magnetic and nonmagnetic) and the interactions between nanoparticles and external magnetic fields are fully expatiated based on numerical simulations. In particular, the advancements of nanoscale magnetic assembly in responsive optical nanostructures, shape-morphing systems, and advanced materials with tunable surface properties are introduced in three subsections. The key roles of magnetic interactions in nanoscale assembly toward customizable physical and chemical properties are highlighted, with focus on how to enable direct manipulation of the positional and orientational orders of the building blocks and orientational control of soft matrices through the incorporation of anisotropic magnetic structures.
机译:纳米级的磁性组装在生产具有高功能和结构多样性的智能材料方面具有巨大潜力。通常,可以通过控制外部磁场来设计或动态调整所得材料的化学,物理和机械性能。这篇评论分析了纳米级磁性组装方法在智能材料开发方面的最新研究进展。基于数值模拟,充分阐述了纳米粒子(磁性和非磁性)之间的磁性相互作用以及纳米粒子与外部磁场之间的相互作用。特别地,在三个小节中介绍了纳米级磁性组件在响应光学纳米结构,形状变形系统和具有可调表面特性的先进材料方面的进步。着重强调了磁性相互作用在纳米级装配中对可定制的物理和化学性质的关键作用,重点在于如何通过引入各向异性的磁性结构来直接操纵构件的位置和方向顺序以及软矩阵的方向控制。

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