Ahniyaz Anwar, Sakamoto Yasuhiro, Bergström Lennart
Materials Chemistry Research Group and Division of Structural Chemistry, Department of Physical, Inorganic, and Structural Chemistry, Arrhenius Laboratory, Stockholm University, 10691 Stockholm, Sweden.
Proc Natl Acad Sci U S A. 2007 Nov 6;104(45):17570-4. doi: 10.1073/pnas.0704210104. Epub 2007 Oct 31.
Tailoring the structure of nanocrystal superlattices is an important step toward controlled design of novel nanostructured materials and devices. We demonstrate how the long-range order and macroscopic dimensions of magnetic nanoparticle arrays can be controlled by the use of a modulated magnetic field. Inducing a dipolar attraction during the initial stage of the drying-mediated self-assembly process was sufficient to assemble the superparamagnetic oleate-capped maghemite nanocubes into large and defect-free superstructures with both translational and orientational order. The characteristic dimensions of the superlattice are controlled by the particle concentration as well as the duration of the applied magnetic field. The superparamagnetic maghemite nanocubes assemble into large and highly oriented thin arrays by applying the magnetic field perpendicular to the substrate surface only during the initial phase of drying-mediated self-assembly. Micrometer-sized and thick three-dimensional mesocrystals are obtained when the drying dispersion is subjected to an external magnetic field of moderate strength for the entire duration of the assembly process. The discovery of how translational and orientation order of nanocrystal superlattices can be induced by a temporal modulation of an anisotropic interparticle force offers new insight on the importance of the initial nucleation stage in the self-assembly process and suggests new routes for controlled self-assembly of dipolar nanocrystals.
定制纳米晶体超晶格的结构是迈向新型纳米结构材料和器件可控设计的重要一步。我们展示了如何通过使用调制磁场来控制磁性纳米颗粒阵列的长程有序性和宏观尺寸。在干燥介导的自组装过程的初始阶段诱导偶极吸引力足以将超顺磁性油酸包覆的磁赤铁矿纳米立方体组装成具有平移和取向有序性的大型无缺陷超结构。超晶格的特征尺寸由颗粒浓度以及施加磁场的持续时间控制。仅在干燥介导的自组装的初始阶段通过施加垂直于基板表面的磁场,超顺磁性磁赤铁矿纳米立方体组装成大型且高度取向的薄阵列。当干燥分散体在整个组装过程中受到中等强度的外部磁场作用时,可获得微米级尺寸且较厚的三维介晶。通过对各向异性粒子间力进行时间调制来诱导纳米晶体超晶格的平移和取向有序性这一发现,为自组装过程中初始成核阶段的重要性提供了新的见解,并为偶极纳米晶体的可控自组装提出了新途径。