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Surface tension-driven assembly of metallic nanosheets at the liquid-air interface: Application to highly laminated magnetic cores

机译:在液-气界面处由表面张力驱动的金属纳米片的组装:应用于高度层压的磁芯

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This paper presents a fabrication technique to develop highly laminated structures comprising stacked thin films, in which the structures are based on surface tension-driven assembly at the liquid-air interface. When multiple metallic films are removed from a liquid solution, there is a surface tension-driven coalescence and self-alignment of the wetted films, resulting in thick metallic microstuctures comprised of many layers of metallic nanosheets after evaporation of the liquid. If the liquid contains a dissolved material, each sheet can further be coated with the material prior to assembly. Based on this technique, we developed laminated structures comprising hundreds of nanoscale layers of alternating metallic film and non-conducting polymer. Electroplated CoNiFe (Cobalt-Nickel-Iron alloy) and a commercial Novec 1700 solution (3M, Minnesota) were utilized for the metallic film and the liquid solution, respectively. However, the assembly process inherently allows a variety of materials to be exploited. Theoretical analysis and experimental results were compared, demonstrating a critical gap between the metallic films, below which capillary force is sufficient for driving self-assembly of the films. As an exemplary application of this technique, highly laminated magnetic cores comprising 600 layers of 500 nm thick CoNiFe that are insulated by 100 nm thick polymer were prepared. A 15-turn toroidal inductor with the fabricated magnetic core exhibited a constant inductance of 2.5 µH up to 30 MHz with a quality factor over 70 at 1 MHz.
机译:本文提出了一种制造技术,以开发包括堆叠薄膜的高度层压结构,其中该结构基于液-气界面处的表面张力驱动组件。当从液体溶液中去除多个金属膜时,存在表面张力驱动的聚结和润湿膜的自对准,导致液体蒸发后,由多层金属纳米片组成的厚金属微观结构。如果液体中含有溶解的材料,则在组装之前,还可以用该材料对每张薄板进行涂覆。基于此技术,我们开发了包含数百个纳米级交替金属膜和不导电聚合物的层状结构。电镀CoNiFe(钴镍镍铁合金)和商用Novec 1700溶液(明尼苏达州3M)分别用于金属膜和液体溶液。然而,组装过程固有地允许使用多种材料。比较了理论分析和实验结果,表明了金属膜之间的临界间隙,在该间隙以下,毛细力足以驱动膜的自组装。作为该技术的示例性应用,制备了高度叠层的磁芯,该磁芯包括由100 nm厚的聚合物绝缘的600层500 nm厚的CoNiFe。具有制成的磁芯的15匝环形电感器在30 MHz时表现出2.5 µH的恒定电感,在1 MHz时的品质因数超过70。

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