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首页> 外文期刊>Electrochimica Acta >Electrodeposition of Co-Pt continuous films and nanowires within diblock copolymer template
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Electrodeposition of Co-Pt continuous films and nanowires within diblock copolymer template

机译:双嵌段共聚物模板中Co-Pt连续膜和纳米线的电沉积

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摘要

Patterned media for future ultrahigh-density magnetic data storage can be prepared by electrodeposition into ordered arrays of nanostructured templates. Diblock copolymer templates have been proposed as a promising alternative to alumina templates. They possess smaller feature sizes than alumina and thereby allow for higher storage densities. Templates with pore diameters of ~8 nm have been fabricated by dip-coating a conducting substrate into a solution of polystyrene-Wock-poly(4-vinylpyridine) (PS-b-P4VP) and 2-(4'-hydroxybenzeneazo) benzoic acid (HABA). A vapor annealing step was interposed for better ordering. The pores are opened by dissolving the HABA from the supramolecular assembly and afterwards filled by electrodeposition. Fe-Pt and Co-Pt alloys are the materials of choice for filling the pores due to their hard magnetic properties like high coercivity and anisotropy. Co-rich Co{sub}80Pt{sub}20 was chosen for this study because it does not require post annealing as in the case of ordered L1{sub}0 CoPt or FePt. Continuous films have been deposited in order to identify the optimum deposition conditions and the influence of deposition current density on chemical composition, growth morphology, and structural and magnetic properties has been studied systematically. The first results on templates electrochemically filled with Co-Pt are presented together with an analysis of their magnetic properties.
机译:可以通过电沉积到纳米结构模板的有序阵列中来准备用于未来超高密度磁数据存储的图案化介质。已经提出了二嵌段共聚物模板作为氧化铝模板的有前途的替代品。它们具有比氧化铝小的特征尺寸,从而允许更高的存储密度。通过将导电基质浸涂在聚苯乙烯-Wock-聚(4-乙烯基吡啶)(PS-b-P4VP)和2-(4'-羟基苯偶氮)苯甲酸的溶液中,制得孔径为〜8 nm的模板(HABA)。为了更好地排序,插入了蒸气退火步骤。通过从超分子组装体中溶解HABA打开孔,然后通过电沉积填充孔。 Fe-Pt和Co-Pt合金是填充孔的首选材料,因为它们具有高矫顽力和各向异性等硬磁性能。选择钴富钴的Co {sub} 80Pt {sub} 20是因为它不需要后退火,就像有序L1 {sub} 0 CoPt或FePt一样。为了确定最佳的沉积条件,已经沉积了连续的膜,并且系统地研究了沉积电流密度对化学成分,生长形态以及结构和磁性的影响。介绍了用电化学方法填充Co-Pt的模板的第一个结果,并对其磁性进行了分析。

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