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模板法電沉積釓鈷合金納米線陣列
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廣東省科技計劃(2006B04001001);廣東省自然科學基金項目(04011311)(021286);深圳市基金項目(200450)


Electrodeposition of Gd-Co Alloy Nanowire Arrays by AAO Template
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    摘要:

    在草酸電解液中用二次陽極氧化法制備多孔陽極化氧化鋁(Anodic Aluminum Oxide, AAO)模板。通過對電流密度、氧化時間、電解液濃度等參數(shù)的調(diào)整,最終獲得孔洞分布均勻、孔徑基本一致、孔口呈六邊形的AAO模板。采用不去除中間鋁,用逐級降壓法和電化學法減薄阻擋層,然后利用中間鋁作為電極,在非水體系中以AAO為模板,直流電沉積釓鈷合金納米線陣列。經(jīng)過SEM觀測,AAO模板孔徑在60 nm左右,去阻擋層前后變化不大,制備的釓鈷合金納米線排列有序、尺寸一致;EDS測定表明納米線為釓鈷合金及少量氧化物納米線,釓鈷摩爾質(zhì)量比為1:7.5,釓鈷合金質(zhì)量分數(shù)為90.66%;XRD分析圖譜表明所得到的釓鈷合金納米線為非晶態(tài)

    Abstract:

    A two-step anodic oxidation process was used to prepare porous anodic aluminum oxide (AAO) template in oxalic acid electrolyte. By adjusting technological parameters including current density, oxidation time and electrolyte concentration, the AAO template possessed of uniformly distributed holes, similar aperture and hexagonal orifice was obtained. Meanwhile, by removing the barrier layer without peeling the film, the residual aluminum became basement and functioned as electrode. In the non-aqueous system, the nanowire array of Gd-Co alloy was prepared by DC electrodeposition in the AAO template. Through the observation of SEM, the aperture of AAO template is approximately 60 nm, and it changes little before and after removing the barrier layer. The prepared Gd-Co alloy nanowire is orderly and in the similar size. EDS measurement shows that nanowires are of Gd-Co alloy and a few oxides, in which Gd-Co alloy content is 90.66wt%, and the mole ratio of Gd to Co is 1:7.5. XRD analysis displays that the nanowire of Gd-Co alloy is noncrystal.

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龔曉鐘,田 鵬,盧向陽.模板法電沉積釓鈷合金納米線陣列[J].稀有金屬材料與工程,2011,40(3):448~452.[Gong Xiaozhong, Tian Peng, Lu Xiangyang. Electrodeposition of Gd-Co Alloy Nanowire Arrays by AAO Template[J]. Rare Metal Materials and Engineering,2011,40(3):448~452.]
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  • 收稿日期:2010-03-18
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