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A robust and facile approach to assembling mobile and highly-open unfrustrated triangular lattices from ferromagnetic nanorods

机译:一种从铁磁纳米棒组装可移动且高度开放的无阻三角形晶格的稳健而便捷的方法

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摘要

A simple and widely applicable approach to assemble long-range two-dimensional mobile arrays of functionalized nickel nanorods with tunable and "highly open" lattice structures is presented. The magnetic assembly of uniformly oriented nanorods in triangular lattices was achieved by a phase separation of the surface confined yet mobile vertical nanorods driven by a gradient magnetic field. In contrast to known approaches, the unfrustrated lattices can be further locked in place allowing for the removal of the applied magnetic field and processing without disrupting the initial order with different symmetries precisely assembled and locked in their position on the same substrate. We suggest that the tunable assemblies of magnetic nanorods provide a versatile platform for downstream handling of open lattice arrays for eventual device integration.
机译:提出了一种简单且可广泛应用的方法来组装功能化镍纳米棒的远程二维可移动阵列,这些纳米棒具有可调和“高度开放”的晶格结构。通过梯度磁场驱动的表面受限但可移动的垂直纳米棒的相分离,实现了三角形晶格中均匀取向的纳米棒的磁性组装。与已知方法相反,未挫折的晶格可以进一步锁定在适当的位置,从而可以去除施加的磁场和进行处理,而不会破坏初始顺序,因为不同的对称性可以精确组装并锁定在同一基板上。我们建议,磁性纳米棒的可调组件为最终设备集成的开放式晶格阵列的下游处理提供了一个通用平台。

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