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Terabit Density Cobalt Nanowire Arrays With Tunable Magnetic Properties

机译:具有可调磁性能的太比特密度钴纳米线阵列

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摘要

Nanoporous templates made from diblock copolymer films are used for electrochemical fabrication of hexagonal arrays of vertical cobalt magnetic nanowires at terabit/in~2 density. The nanowire diameter and areal density are determined by the copolymer molecular weight, whereas the nanowire length and internal crystal morphology are controlled through the dc electrodeposition growth process. The array magnetic properties can be modified substantially by electrodeposition pH conditions while keeping wire size and interwire distance constant. Optimum pH control results in preferential growth of c-axis oriented crystallites with large perpendicular coercivity. The appearance of exchange bias behavior, exhibited at low temperatures, is also investigated.
机译:由二嵌段共聚物薄膜制成的纳米孔模板用于电化学制备垂直钴磁性纳米线的六方阵列,密度为TB / in〜2。纳米线的直径和面密度由共聚物的分子量决定,而纳米线的长度和内部晶体形态则通过直流电沉积生长过程来控制。可以通过电沉积pH条件基本上改变阵列的磁性,同时保持导线尺寸和导线间距离恒定。最佳的pH控制可导致具有较大垂直矫顽力的c轴取向微晶优先生长。还研究了在低温下表现出的交换偏压行为。

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