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首页> 外文期刊>Physica Status Solidi. C, Conferences and critical reviews >Microstructure of nanopores in AAO templates favoring the growth of nickel nanowires by electrodeposition
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Microstructure of nanopores in AAO templates favoring the growth of nickel nanowires by electrodeposition

机译:AAO模板中纳米孔的微观结构有利于通过电沉积法生长镍纳米线

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摘要

Morphology of periodical nanoscale pores in AAO templates has been studied in relation with anodizing process, focusing on the growth of nickel nanowires by electrochemical deposition. The AAO templates were prepared by a two-step anodization process. The high purity aluminum plates were anodized in oxalic acid aqueous solution with variation of cell voltage. The pore size and interpore distance both increase with the applied potential. During the post treatment of barrier thinning, small-size pores with split-up structure at the tips are observed due to current-limited anodizing process (decreasing cell potential). The rectifying properties of the barrier layer allow the pores to be filled by nickel by AC electrodeposition. The nickel nanowires array shows the ferromagnetic properties with a preferred magnetic orientation along the wire axis.
机译:已经研究了与阳极氧化工艺相关的AAO模板中周期性纳米级孔的形貌,重点是通过电化学沉积法生长镍纳米线。 AAO模板是通过两步阳极氧化过程准备的。将高纯度铝板在草酸水溶液中进行阳极氧化,以改变电池电压。孔径和孔间距都随着施加的电势而增加。在势垒减薄的后处理过程中,由于电流受限的阳极氧化过程(降低了电池的电势),在尖端发现了具有分裂结构的小孔。阻挡层的整流性能允许孔通过交流电沉积被镍填充。镍纳米线阵列显示出铁磁性质,并沿着线轴具有最佳的磁性方向。

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