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Magnetic field-assisted assembly of iron oxide mesocrystals: a matter of nanoparticle shape and magnetic anisotropy

机译:氧化铁介晶的磁场辅助组装:纳米颗粒形状和磁各向异性的问题

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This letter describes the formation and detailed characterization of iron oxide mesocrystals produced by the directed assembly of superparamagnetic iron oxide-truncated nanocubes using the slow evaporation of the solvent within an externally applied homogeneous magnetic field. Anisotropic mesocrystals with an elongation along the direction of the magnetic field can be produced. The structure of the directed mesocrystals is compared to self-assembled mesocrystalline films, which are formed without the influence of a magnetic field. The remarkable structural difference of mesocrystals produced within the external magnetic field from those self-assembled without field indicates that the specific nanoparticle ordering within the superstructure is driven by competing of two types of anisotropic interactions caused by particle shape (i.e., faceting) and orientation of the magnetic moment (i.e., easy axes: submagnetite/sub). Hence, these findings provide a fundamental understanding of formation mechanisms and structuring of mesocrystals built up from superparamagnetic nanoparticles and how a magnetic field can be used to design anisotropic mesocrystals with different structures.
机译:这封信描述了通过在外部施加的均匀磁场中缓慢蒸发溶剂,通过超顺磁性氧化铁截短的纳米立方的定向组装而产生的氧化铁介晶的形成和详细表征。可以产生沿磁场方向伸长的各向异性介晶。将定向介晶的结构与自组装介晶膜进行比较,该膜在不受磁场影响的情况下形成。在外磁场中产生的中观晶体与没有磁场的自组装中显着的结构差异表明,超结构中特定的纳米粒子有序排列是由两种各向异性相互作用的竞争所驱动的,这种相互作用是由粒子的形状(即刻面)和取向引起的。磁矩(即易轴:磁铁矿)。因此,这些发现提供了对由超顺磁性纳米粒子形成的介晶的形成机理和结构的基本理解,以及如何使用磁场来设计具有不同结构的各向异性介晶。

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