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Electrochemical studies of nickel deposition from aqueous solution in super-gravity field
作者单位:GUO ZhanCheng(Metallurgical & Ecological School, University of Science and Technology, Beijing 100083, China; Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100080, China) ;GONG YingPeng(Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100080, China) ;LU WeiChang(Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100080, China) ;
基金项目:the Notional Natural Science Foundation of China (Grant No. 50674011)
摘    要:The effect of super-gravity on electrochemical deposition of nickel from aqueous solution was studied. The SEM pictures show that the microstructure of nickel film deposited under the super-gravity condition is finer and more uniform compared with that obtained in normal gravity condition, and the crystal grains diminish with the increase of super-gravity coefficient. The XRD patterns indicate that the ar-rangement of crystalline grains of nickel film deposited under the super-gravity field is more regular, and the crystalline grain sizes decrease with the increase of super-gravity coefficient. Toughness, tensile stress and hardness of the nickel film are markedly raised with the increase of super-gravity coefficient, and hydrogen content in the nickel film decreases with the increase of super-gravity coefficient. From the polarization curves of hydrogen evolution reaction under the su-per-gravity condition, a significant reduction of over-potential on electrode was found when current density increased. The process of hydrogen evolution reaction was enhanced under the super-gravity condition. The electro-deposition rate, the microstructure and properties of deposited nickel film under super-gravity condi-tion were still affected by the relative orientation between inertia force and depos-iting surface. It is favorable to gain the nickel film with better mechanic properties when inertia force orientates vertically towards depositing surface.

收稿时间:2005-06-13
修稿时间:2006-09-27

Electrochemical studies of nickel deposition from aqueous solution in super-gravity field
Guo ZhanCheng,Gong YingPeng,Lu WeiChang. Electrochemical studies of nickel deposition from aqueous solution in super-gravity field[J]. Science in China(Technological Sciences), 2007, 50(1): 39-50. DOI: 10.1007/s11431-007-0001-9
Authors:Guo ZhanCheng  Gong YingPeng  Lu WeiChang
Affiliation:1. Metallurgical & Ecological School, University of Science and Technology, Beijing 100083, China; Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100080, China
2. Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100080, China
Abstract:The effect of super-gravity on electrochemical deposition of nickel from aqueous solution was studied. The SEM pictures show that the microstructure of nickel film deposited under the super-gravity condition is finer and more uniform compared with that obtained in normal gravity condition, and the crystal grains diminish with the increase of super-gravity coefficient. The XRD patterns indicate that the ar-rangement of crystalline grains of nickel film deposited under the super-gravity field is more regular, and the crystalline grain sizes decrease with the increase of super-gravity coefficient. Toughness, tensile stress and hardness of the nickel film are markedly raised with the increase of super-gravity coefficient, and hydrogen content in the nickel film decreases with the increase of super-gravity coefficient. From the polarization curves of hydrogen evolution reaction under the su-per-gravity condition, a significant reduction of over-potential on electrode was found when current density increased. The process of hydrogen evolution reaction was enhanced under the super-gravity condition. The electro-deposition rate, the microstructure and properties of deposited nickel film under super-gravity condi-tion were still affected by the relative orientation between inertia force and depos-iting surface. It is favorable to gain the nickel film with better mechanic properties when inertia force orientates vertically towards depositing surface.
Keywords:super-gravity  electrochemistry  electro-deposition  nickel film
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