期刊文献+

Evolution of zinc morphology during continuous electrodeposition

Evolution of zinc morphology during continuous electrodeposition
下载PDF
导出
摘要 The morphology evolution of zinc continuous electrodeposits with nano-sized crystals on the ferrite substrate has been studied by in-situ scanning tunnel spectroscopy (STM). It is found that the morphology of zinc electrodeposits varies from initial granules with a size of about 30nm to layered platelets with increasing deposition time. Meanwhile, the crystal structure of the zinc electrodeposits is identified to be hexagonal η-phase by X-ray diffraction. The orientation relationship between zinc crystals and the substrate surface can be interpreted in terms of the misfit and the atomic correspondence of the interphase boundary between the η-phase deposits and α-Fe substrate. The morphology evolution of zinc continuous electrodeposits with nano-sized crystals on the ferrite substrate has been studied by in-situ scanning tunnel spectroscopy (STM). It is found that the morphology of zinc electrodeposits varies from initial granules with a size of about 30nm to layered platelets with increasing deposition time. Meanwhile, the crystal structure of the zinc electrodeposits is identified to be hexagonal η-phase by X-ray diffraction. The orientation relationship between zinc crystals and the substrate surface can be interpreted in terms of the misfit and the atomic correspondence of the interphase boundary between the η-phase deposits and α-Fe substrate.
出处 《Journal of University of Science and Technology Beijing》 CSCD 2003年第1期35-38,共4页 北京科技大学学报(英文版)
基金 This work was financially supported by National Natural Science Founds of China (No.59971008).
关键词 Zn electrodeposit crystal morphology epitaxial growth orientation relationship scanning tunnel spectroscopy Zn electrodeposit crystal morphology epitaxial growth orientation relationship scanning tunnel spectroscopy
  • 相关文献

参考文献9

  • 1K. Kondo,S. Hinotani,Y. Ohmori.Crystal structure and morphology of electrodeposited zinc-iron binary alloys[J].Journal of Applied Electrochemistry.1988(1)
  • 2Kazuhito Kamel,Yasuya Ohmori.Hetero-epitaxial growth of zinc electrodeposits on low-carbon steel sheets[J].Journal of Applied Electrochemistry.1987(4)
  • 3K. Kondo,M. Yokoyama,K. Shinohara.Morphology evolution of zinc-nickel binary alloys electrodeposited with pulse current[].Journal of the Electrochemical Society.1995
  • 4H. Park,F. Cerwinski,J. A. Szpunar.AFM study on morphology evolution of zinc-iron electrodeposits[].Proc of the Electrochemical Soc Second Symp on Electrochemically Deposited Thin Films II.1994
  • 5H. Ohtsubo,T. Matsumoto,K. Nakai,Y. Ohmori.Crystallographic analysis of electrodeposited -zinc crystals electrodeposited on steel substrate[].Iron and Steel Institute of Japan.1994
  • 6Y.-P. Lin,,J. R. Selman.Electrodeposition of Corrosion-resistant Ni-Zn Alloy[].Journal of the Electrochemical Society.1993
  • 7.Growth and Perfection of Crystals: Proceedings of the International Conference on Crystal Growth, Cooperstown, New York, United States, 1958[]..1958
  • 8Kazuo Kondo.Morphology evolution of zinc-iron binary alloys electrodeposited with copper additive[].Journal of the Electrochemical Society.1996
  • 9Ohmori,Y.,Nakai,K.,Ohtsubo,H.,Yagi,T.,Matsumoto,T. Iron and Steel Institute of Japan . 1993

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部