欢迎登录材料期刊网

材料期刊网

高级检索

随着纳米科学技术的发展,铝阳极氧化由传统的普通氧化进入到精细氧化.精细氧化技术经历了两步阳极氧化法、快速阳极氧化法和循环或多步氧化法3个阶段.铝表面精细阳极氧化技术有望在铝及铝合金的功能化应用方面得到进一步的发展.

参考文献

[1] Masuda H;Fukuda K .ORDERED METAL NANOHOLE ARRAYS MADE BY A TWO-STEP REPLICATION OF HONEYCOMB STRUCTURES OF ANODIC ALUMINA[J].Science,1995(5216):1466-1468.
[2] Wallraff G.M.;Hinsberg W.D. .Lithographic lmaging Techniques for the Formation of Nanoscopic Features[J].Chemical Reviews,1999(6):1801-1821.
[3] BUDAKIAN R;WENINGER k;HILLER R A et al.Picosecond discharges and stick-slip friction at a moving meniscus ofmercury on glass[J].Nature,1998,391(6664):266-268.
[4] LIU GANG-YU .Nanofabrication of Self-Assembled Monolayers Using Scanning Probe Lithography[J].Accounts of Chemical Research,2000(7):457-466.
[5] Montero-Moreno JM;Sarret M;Muller C .Influence of the aluminum surface on the final results of a two-step anodizing[J].Surface & Coatings Technology,2007(14):6352-6357.
[6] Rauf A;Mehmood M;Rasheed MA;Aslam M .The effects of electropolishing on the nanochannel ordering of the porous anodic alumina prepared in oxalic acid[J].Journal of solid state electrochemistry,2009(2):321-332.
[7] LI Y;LING Z Y;CHEN S S et al.Fabrication of novel porous anodic alumina membranes by two-step hard anodization[J].Nanotechnology,2008,19(02):225604.
[8] Chu, SZ;Wada, K;Inoue, S;Isogai, M;Yasumori, A .Fabrication of ideally ordered nanoporous alumina films and integrated alumina nanotubule arrays by high-field anodization[J].Advanced Materials,2005(17):2115-2118.
[9] Lee K;Tang Y;Ouyang M .Self-Ordered, Controlled Structure Nanoporous Membranes Using Constant Current Anodization[J].Nano letters,2008(12):4624-4629.
[10] Jia YF;Zhou HH;Luo P;Luo SL;Chen JH;Kuang YF .Preparation and characteristics of well-aligned macroporous films on aluminum by high voltage anodization in mixed acid[J].Surface & Coatings Technology,2006(3/4):513-518.
[11] WOO LEE;RAN Jl;ULRICH GOSELE .Fast fabrication of long-range ordered porous alumina membranes by hard anodization[J].Nature materials,2006(9):741-747.
[12] Schwirn, K.;Lee, W.;Hillebrand, R.;Steinhart, M.;Nielsch, K.;G?sele, U. .Self-ordered anodic aluminum oxide formed by H_2SO_4 hard anodization[J].ACS nano,2008(2):302-310.
[13] LI D D;JIANG C H;JLANG J H et al.Investigation on highly ordered porous anodic alumina membranes formed by high electronic field anodization[J].Materials Chemistry and Physics,2008,111(01):168-171.
[14] RAHIMI M H;SARAMAD S;TABAIAN S H et al.Study the effect of striping in two-step anodizing process on pore arrangement of nano-poroes alumina[J].Applied Surface Science,2009,256(01):12-16.
[15] Lee W;Schwirn K;Steinhart M;Pippel E;Scholz R;Gosele U .Structural engineering of nanoporous anodic aluminium oxide by pulse anodization of aluminium[J].Nature nanotechnology,2008(4):234-239.
[16] Lee W;Scholz R;Gosele U .A continuous process for structurally well-defined Al2O3 nanotubes based on pulse anodization of aluminum[J].Nano letters,2008(8):2155-2160.
[17] Dusan Losic;Mickael Lillo;Dusan Losic Jr. .Porous Alumina with Shaped Pore Geometries and Complex Pore Architectures Fabricated by Cyclic Anodization**[J].Small,2009(12):1392-1397.
[18] Losic, D;Losic, D .Preparation of Porous Anodic Alumina with Periodically Perforated Pores[J].Langmuir: The ACS Journal of Surfaces and Colloids,2009(10):5426-5431.
[19] T. Nagaura;F. Takeuchi;S. Inoue .Fabrication and structural control of anodic alumina films with inverted cone porous structure using multi-step anodizing[J].Electrochimica Acta,2008(5):2109-2114.
[20] Chen Shuoshuo;Ling Zhiyuan;Hu Xing .Competitive growth of branched channels inside AAO membranes[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2010(9):1794-1798.
[21] Jerrod E. Houser;Kurt R. Hebert .The role of viscous flow of oxide in the growth of self-ordered porous anodic alumina films[J].Nature materials,2009(5):415-420.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%