Coloration by Zinc-Nickel Composite Electrodeposition from Chloride Solution

被引:1
|
作者
Nakano, Hiroaki [1 ]
Kataoka, Syota [2 ]
Oue, Satoshi [1 ]
Kobayashi, Shigeo [3 ]
机构
[1] Kyushu Univ, Fac Engn, Nishi Ku, Fukuoka 8190395, Japan
[2] Kyushu Univ, Grad Sch Engn, Fukuoka 8190395, Japan
[3] Kyushu Sangyo Univ, Fac Engn, Fukuoka, Japan
来源
TETSU TO HAGANE-JOURNAL OF THE IRON AND STEEL INSTITUTE OF JAPAN | 2013年 / 99卷 / 12期
关键词
electrodeposition; Zn-Ni composite; color; chromaticity; interference of light; deposited film; chloride solution; index of refraction; ROTATION EVOLUTIONAL CONTROL; SURFACE COLOR;
D O I
10.2355/tetsutohagane.99.709
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Zn-Ni composite electrodeposition was performed under coulostatic (515-5145C.m(-2)) and galvanostatic (5A.m(-2)) conditions on a brass with Ni precoating in an unagitated chloride solution at 23 degrees C to investigate the color and structure of the deposited films. The chromaticity of deposited Zn-Ni composite films changed in a clockwise direction in each quadrant of a*b* diagram of La*b* color space with increasing the amount of charge. The deposited films contained S, Zn and Ni, and the content was in the order of S > Zn > Ni. XPS revealed that the deposited films were composed of ZnS, ZnO and Ni mainly and contained Zn(OH)(2) and Zn slightly. The color of deposited films is attributed to interference of light, and the index of refraction of deposited films composed of ZnS, ZnO and Ni is assumed to be large. When the Ni was excluded from the electrolytic solution, ZnS did not codeposit and the deposition of Zn in metallic state increased. This suggests that the Ni deposition induces the codeposition of ZnS.
引用
收藏
页码:709 / 715
页数:7
相关论文
共 50 条
  • [31] Electrodeposition of nickel and composite nickel-fullerenol coatings from low-temperature sulphate-chloride-isobutyrate electrolyte
    Antihovich, I. V.
    Ablazhey, N. M.
    Chernik, A. A.
    Zharsky, I. M.
    XV INTERNATIONAL SCIENTIFIC CONFERENCE CHEMISTRY AND CHEMICAL ENGINEERING IN XXI CENTURY DEDICATED TO PROFESSOR L.P. KULYOV, 2014, 10 : 373 - 377
  • [32] Corrosion behaviour of zinc-nickel coatings, electrodeposited on steel
    Gavrila, M
    Millet, JP
    Mazille, H
    Marchandise, D
    Cuntz, JM
    SURFACE & COATINGS TECHNOLOGY, 2000, 123 (2-3) : 164 - 172
  • [33] Influence of deposition temperature on the corrosion resistance of electrodeposited zinc-nickel alloy coatings
    Beheshti, M.
    Ismail, M. C.
    Kakooei, S.
    Shahrestani, S.
    Mohan, G.
    Zabihiazadboni, M.
    MATERIALWISSENSCHAFT UND WERKSTOFFTECHNIK, 2018, 49 (04) : 472 - 482
  • [34] Electrodeposition of Zinc–Nickel Alloys from Ammonium Oxalate Electrolytes
    R. F. Shekhanov
    S. N. Gridchin
    A. V. Balmasov
    Russian Journal of Electrochemistry, 2018, 54 : 355 - 362
  • [35] Electroplating and Physicochemical Properties of Zinc-Nickel Alloy Coatings from Ammonium Oxalate Electrolytes
    Shekhanov, R. F.
    Gridchin, S. N.
    Balmasov, A. V.
    SURFACE ENGINEERING AND APPLIED ELECTROCHEMISTRY, 2020, 56 (04) : 427 - 431
  • [36] MORPHOLOGY AND MICROSTRUCTURE OF ELECTRODEPOSITED ZINC-NICKEL BINARY-ALLOYS
    KONDO, K
    TETSU TO HAGANE-JOURNAL OF THE IRON AND STEEL INSTITUTE OF JAPAN, 1991, 77 (07): : 886 - 891
  • [37] Study on corrosion resistance of electroplating zinc-nickel alloy coatings
    Tian, W.
    Xie, F. Q.
    Wu, X. Q.
    Yang, Z. Z.
    SURFACE AND INTERFACE ANALYSIS, 2009, 41 (03) : 251 - 254
  • [38] Cathodic process of nickel electrodeposition from ammonia–ammonium chloride solutions
    Liang Yuan
    Zhi-Ying Ding
    Shi-Jun Liu
    Ya-Ning He
    Rare Metals, 2023, 42 : 1061 - 1066
  • [39] Improved Uniformity Properties and Corrosion Resistance of Zinc-Nickel Composite Coating Enhanced by Nano-SiO2
    Chang, Sujie
    Wang, Yuanhao
    Wang, Jianpeng
    Hao, Zerui
    Yang, Yang
    Wang, Yi
    Wang, Xinyi
    Cao, Fan
    Shi, Lei
    COATINGS, 2025, 15 (01):
  • [40] Electrodeposition of Zinc from Zinc Oxide and Zinc Chloride in 1-Methylimidazolium Trifluoromethylsulfonate Ionic Liquid
    Min Li
    Ying Li
    Protection of Metals and Physical Chemistry of Surfaces, 2020, 56 : 180 - 188