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Template free, large scale synthesis of cobalt nanowires using magnetic fields for alignment

机译:使用磁场进行对准的无模板的大规模合成钴纳米线的方法

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摘要

The application of an external magnetic field on a metallic cobalt nanoparticle loaded exhaust gas stream produced by reducing flame synthesis resulted in the formation of self-aligned metallic cobalt nanowires of 20-50 nm diameter. This template free, continuous and rapid production method afforded nanowires with an aspect ratio of over 1000 (length/diameter) at a production rate of over 30 g h(-1). At high magnetic fields the nanowires formed bundles with distinctive parallel orientation. In the absence of a directing magnetic field, thermophoresis promoted an irregular growth and resulted in highly branched and porous nanomeshes on cooled, stainless steel collectors. The high production rates of this template free preparation method suggest application of the process for large scale manufacturing of magnetic nanomeshes for filtration or nanowires for magnetic storage and anisotropic functional materials.
机译:在通过减少火焰合成产生的负载金属钴纳米颗粒的排气流上施加外部磁场导致形成直径为20-50nm的自对准金属钴纳米线。这种无模板,连续和快速的生产方法以超过30 g h(-1)的生产率提供了长宽比超过1000(长度/直径)的纳米线。在强磁场下,纳米线形成具有独特平行取向的束。在没有方向磁场的情况下,热泳会促进不规则生长,并在冷却的不锈钢收集器上产生高度分支和多孔的纳米网。这种无模板制备方法的高生产率表明该方法可用于大规模制造用于过滤的磁性纳米网或用于磁性存储和各向异性功能材料的纳米线。

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