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Improving nucleation in the fabrication of high-quality 3D macro-porous copper film through the surface-modification of a polystyrene colloid-assembled template

Improving nucleation in the fabrication of high-quality 3D macro-porous copper film through the surface-modification of a polystyrene colloid-assembled template
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摘要 A new approach is developed to the fabrication of high-quality three-dimensional macro-porous copper films. A highly-ordered macroporous copper film is successfully produced on a polystyrene sphere (PS) template that has been modified by sodium dodecyl sulfate (SDS). It is shown that this procedure can change a hydrophobic surface of PS template into a hydrophilic surface. The present study is devoted to the influence of the electrolyte solution transport on the nucleation process. It is demonstrated that the permeability of the electrolyte solution in the nanochannels of the PS template plays an important role in the chemical electrodeposition of high-quality macroporous copper film. The permeability is drastically enhanced in our experiment through the surface modification of the PS templates. The method could be used to homogeneously produce a large number of nucleations on a substrate, which is a key factor for the fabrication of the high-quality macroporous copper film. A new approach is developed to the fabrication of high-quality three-dimensional macro-porous copper films. A highly-ordered macroporous copper film is successfully produced on a polystyrene sphere (PS) template that has been modified by sodium dodecyl sulfate (SDS). It is shown that this procedure can change a hydrophobic surface of PS template into a hydrophilic surface. The present study is devoted to the influence of the electrolyte solution transport on the nucleation process. It is demonstrated that the permeability of the electrolyte solution in the nanochannels of the PS template plays an important role in the chemical electrodeposition of high-quality macroporous copper film. The permeability is drastically enhanced in our experiment through the surface modification of the PS templates. The method could be used to homogeneously produce a large number of nucleations on a substrate, which is a key factor for the fabrication of the high-quality macroporous copper film.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2007年第2期468-471,共4页 中国物理B(英文版)
关键词 photonic band-gap materials MACROPOROUS electrodeposition colloidal self-assembly photonic band-gap materials, macroporous, electrodeposition, colloidal self-assembly
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参考文献16

  • 1Lopez C 2003 Adv. Mater. 15 1679
  • 2Denkov N D, Velev O D, Kralchevsky P A, Ivanov I B,Yoshimura H and Nagayama K 1992 Langmuir 8 3183
  • 3Moroz A 2000 Europhys Lett. 50 466
  • 4Liu X D, Ni P G, Cheng B Y and Zhang D Z 2004 Acta Phys. Sin. 53 3059 (in Chinese)
  • 5Wang J, Yuan C W, Huang Z B and Tang F Q 2004 Acta Phys. Sin. 53 3054 (in Chinese)
  • 6Yah H W, Blanford C F, Holland B T, Parent M, Smyrl W H and Stein A 1999 Adv. Mater. 11 1003
  • 7Peng J, Cizeron J, Bertone J F and Colvin V L 1999 J.Amer. Chem. Soc. 121 7957
  • 8Velev O D, Tessier P M, Lenhoff A M and Kaler E W 1999 Nature 401 548
  • 9Wijnhoven J E G J, Zevenhuizen S J M, Hendriks M A,Vanmaekelbergh D, Kelly J J and Vos W L 2000 Adv.Mater. 12 888
  • 10Tuin G, Peters A C I A, Vandiemen A J G and Stein H N 1993 J. Colloid Interface Sci. 158 508

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