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金属学报  2004, Vol. 40 Issue (2): 173-178     
  论文 本期目录 | 过刊浏览 |
六方BN微颗粒表面化学镀Ni及动力学模型
李 钒;张登君;李报厚;罗世民
中国科学院过程工程研究所; 北京 100080
Chemical Plating Nickel on the Surface of Hexagonal Boron Nitride Micro-Particles and Its Kinetic Model
LI Fan; ZHANG Dengjun; LI Baohou; LUO Shimin
Institute of Process Engineering; The Chinese Academy of Sciences; Beijing 100080
引用本文:

李钒; 张登君; 李报厚; 罗世民 . 六方BN微颗粒表面化学镀Ni及动力学模型[J]. 金属学报, 2004, 40(2): 173-178 .
, , , . Chemical Plating Nickel on the Surface of Hexagonal Boron Nitride Micro-Particles and Its Kinetic Model[J]. Acta Metall Sin, 2004, 40(2): 173-178 .

全文: PDF(5624 KB)  
摘要: 以肼为还原剂在平均粒径为104 μm的BN颗粒表面进行了化学镀Ni, 提出了近球 形颗粒表面“扩展-缩小自催化沉积”模型, 较好地解释沉积量随时间的变 化规律. 依此模型推导了化学镀Ni沉积过程的动力学表达式. 观测了不同沉积 时间表面沉积Ni颗粒的SEM形貌变化规律, 证实了动力学模型的正确性.
关键词 动力学模型 化学镀Ni BN微颗粒     
Abstract:The kinetic investigation of hydrazine reduction chemical plating nickel on the surface of hexagonal boron nitride with the average diameter 104 μm particles has been carried out. A model, extension-contraction autocatalysis reaction interface, was created which can demonstrate the curves of deposited nickel with time. Based on the model a kinetic expression for the chemical planting process has been derived, and with the expression the experimental kinetic curves could be fitted, experiments verified the model being suitable. SEM morphologies and EDS analysis of the deposited nickel on the BN surface for different times also supported the model.
Key wordskinetic model    chemical plating nickel    boron nitride micro-particle
收稿日期: 2003-02-19     
ZTFLH:  TQ153.12  
[1] Li F, Zhang D J, Li B H, Luo S M. Chin J Proc Eng, 2002; 2: 425(李钒,张登君,李报厚,罗世民.过程工程学报,2002;2:425)
[2] Levy D J. Electrochem Technol, 1963; 1: 38
[3] Liang H Z, Sun J C, Huang J Z, Li J Y. Eng Chem Metall, 1984: 5: 18(梁焕珍,孙京成,黄建忠,李晋尧.化工冶金,1984;5:18)
[4] Chai L Y. Zhong H Y, Min X B. J Cent South Univ Technol (Nat Sci), 1997; 28: 470(柴立元,钟海云,闵小波.中南工业大学学报(自然科学版),1997;28:470)
[5] Shao Z C, Tian Y W, Zhai Y C, Li B S. J Inorg Mater, 1999: 14: 397(邵忠财,田彦文,翟玉春,李保山.无机材料学报,1999;14:397)
[6] Egorova L G, Sakhieva A S, Bassele A B, Vreyter A L, Lozhnikova O P. Prot Met, 1975; 11: 505 (1975; 11: 505)
[7] Jiang X X, Shen W. The Fundamental and Practice of Electroless Plating. Beijing: National Defence Industry Press, 2000: 23(姜晓霞,沈伟.化学镀理论与实践.北京:国防工业出版社,2000:23)
[8] Chen J Y, Yang S Z, Ke J J, Mao M H. Research and Development of Hydrometallurgy. Beijing: Metallurgical Industry Press, 1998: 444(陈家镛,杨守志,柯家骏,毛铭华.湿法冶金的研究与发展.北京:冶金工业出版社,1998:444)
[9] Zhou G D, Duan L Y. The Fundamental of Structural Chemistry. 2nd ed., Beijing: Peking University Press, 1995: 473(周公度,段连运.结构化学基础.第2版,北京:北京大学出版社,1995:473)
[10] L M X, Huang C B, Song Y J. Chemical Power Source. Tianjin: Tianjin University Press. 1992: 127(吕鸣祥,黄长保,宋玉瑾.化学电源.天津:天津大学出版社,1992:127)
[11] Zhang J Y, Zhou T P, Ma Y J, Fang X L, Lei J B. Steel Res, 1997; 68: 3
[12] Qu J X, Wang H H. Handbook of Surface Engineering. Beijing: Chemical Industry Press, 1998: 179(曲敬信,汪鸿宏.表面工程手册.北京:化学工业出版社,1998:179)
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