采用去合金化法对Cu0.3Mn0.7合金进行自腐蚀制备出厚度为1 mm的纳米多孔铜块体材料.采用XRD、SEM、EDS、AAS等分析了样品的相组成、微观形貌和元素含量.结果表明:样品在室温0.1 mol/L盐酸溶液中自腐蚀10 d,得到成分单一,结构均匀的三维连通纳米多孔铜块体材料,其表面平均孔径尺寸约125 nm,平均骨架尺寸约80 nm,横截面平均孔径尺寸约300 nm.
参考文献
[1] | 张文彦,奚正平,方明,李亚宁,李广忠,张龙.纳米孔结构金属多孔材料研究进展[J].稀有金属材料与工程,2008(07):1129-1133. |
[2] | Kueheyev S O et al.[J].Applied Physics Letters,2006,89(05):053-102. |
[3] | Juergen B et al.[J].Journal of Applied Physics,2005,97(02):024-301. |
[4] | Yi Ding;Mingwei Chen;Jonah Erlebacher .Metallic Mesoporous Nanocomposites for Electrocatalysis[J].Journal of the American Chemical Society,2004(22):6876-6877. |
[5] | 阚义德,刘文今,钟敏霖,马明星.脱合金法制备纳米多孔金属的研究进展[J].金属热处理,2008(03):43-46. |
[6] | Hayes J R et al.[J].Journal of Materials Research,2006,21(10):2611. |
[7] | Jonah Erlebacher et al.[J].Nature,2001,4103(22):450. |
[8] | Biener J;Hodge AM;Hayes JR;Volkert CA;Zepeda-Ruiz LA;Hamza AV;Abraham FF .Size effects on the mechanical behavior of nanoporous Au[J].Nano letters,2006(10):2379-2382. |
[9] | Senior N A et al.[J].Journal of Physical Chemistry B,2006,110:4318. |
[10] | Huang Jing-Fang et al.[J].Advanced Functional Materials,2005,15:989. |
[11] | D. V. Pugh;A. Dursun;S. G. Corcoran .Electrochemical and Morphological Characterization of Pt-Cu Dealloying[J].Journal of the Electrochemical Society,2005(11):B455-B459. |
[12] | J. Erlebacher;K. Sieradzki .Pattern formation during dealloying[J].Scripta materialia,2003(10):991-996. |
[13] | 谭秀兰 et al.[J].强激光与离子束,2009,21(01):63. |
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