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去合金化工艺对纳米多孔铜孔结构的影响
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国家自然科学基金(10804101);等离子体物理国防科技重点实验室基金(9140C6805020806);国家重点基础研究发展计划项目(2007CB815102)


Effects of the Dealloying Process on the Morphology of Nanoporous Copper
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    摘要:

    以Mn-Cu合金为前驱体合金,在酸溶液中腐蚀去合金化成功制备出孔径尺寸为纳米量级的纳米多孔铜。 研究了去合金化工艺参数中的酸溶液成分、腐蚀时间及腐蚀温度对最终纳米多孔铜孔结构及Mn的选择性腐蚀程度影响。结果表明:在0.1 mol/L HCl溶液中自由腐蚀去合金化后可得到孔结构均匀的纳米多孔铜;随着腐蚀时间的延长,孔结构有显著变化,腐蚀2 d所得纳米多孔铜样品的孔结构呈蜂窝状,腐蚀5 d所得样品的孔结构呈均匀的三维网络状结构,而后随着腐蚀时间的延长,孔壁逐渐粗化;随着腐蚀温度升高到60 ℃,样品中的残余Mn含量降低明显。通过调整去合金化工艺,实验所制备的纳米多孔铜孔结构呈均匀的三维网络状,孔隙率为57.7%,平均孔径尺寸约140 nm。

    Abstract:

    Nanoporous copper with nano-scale pore size was synthesized by dealloying Mn-Cu alloy using a free corrosion method in acid solution. The effect of dealloying parameters, which include the electrolyte component, temperature and time of dealloying, on the residual Mn content and micro-morphology of nanoporous Cu was investigated. The results show that the nanoporous copper with a uniform three-dimensional pore structure can be created by dealloying in 0.1 mol/L HCl solution. The pore shape grows from honeycombs to three-dimensional networks with prolonging the corrosion time from 2 d to 5 d. Then with the continually increased corrosion time, the pore wall becomes coarse gradually. By increasing the temperature of the electrolyte to 60 oC, the residual Mn content is reduced obviously. The resultant nanoporous copper possesses uniform porous structures in three-dimensional network, the porosity of 57.7%, and the average pore size of 140 nm

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谭秀兰,李 恺,刘 颖,吴卫东,罗江山,唐永建.去合金化工艺对纳米多孔铜孔结构的影响[J].稀有金属材料与工程,2010,39(11):2011~2014.[Tan Xiulan, Li Kai, Liu Ying, Wu Weidong, Luo Jiangshan, Tang Yongjian. Effects of the Dealloying Process on the Morphology of Nanoporous Copper[J]. Rare Metal Materials and Engineering,2010,39(11):2011~2014.]
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  • 收稿日期:2009-11-25
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