Electrochemical Characterization of Electrodeposited Ni-titanium Dioxide Deposits on Copper and their Corrosion Study

K. Berarma, A. Raghdi, Ghania Benaiche
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Abstract

This work aimed to produce and characterize composite coatings of nickel incorporating TiO2 nanoparticles on a copper substrate. These deposits were obtained from watts bath. In the study, the cyclic voltammetry technique was employed to provide a better understanding of the cathodic behavior of nickel deposition. The effects of the potential scanning rate and the effect of cathodic limits on cyclic voltammograms deposition of Ni in Primitive Watts Bath (BWP) were determined. The composite coatings of nickel incorporating TiO2 nanoparticles were characterized using various electrochemical techniques such as open circuit potential (OCP) and potentiodynamic polarization measurements, and electrochemical impedance spectroscopic methods. The current density values for the Ni-TiO2 in the case of 5 g/L and 10 g/L of TiO2 determined from the polarization curves recorded in 3.5% NaCl indicate that the corrosion process on nickel incorporating the TiO2 nanoparticle composite surface is slower than on pure nickel. The TiO2 particles embedded in the electroplated nickel, increase the polarization resistance and decrease the corrosion rates as compared with electrodeposited pure nickel. Electrochemical impedance spectra obtained at the open-circuit potential ( OCP) in 3.5% NaCl showed an increase of polarization resistance with time in all cases.
电沉积镍-二氧化钛在铜表面的电化学表征及其腐蚀研究
这项工作的目的是在铜衬底上制备和表征含TiO2纳米颗粒的镍复合涂层。这些沉积物是从瓦氏浴中获得的。在这项研究中,循环伏安技术被用于更好地了解镍沉积的阴极行为。研究了电位扫描速率和阴极极限对镍在原始瓦浴(BWP)中循环伏安沉积的影响。采用各种电化学技术,如开路电位(OCP)和动电位极化测量,以及电化学阻抗谱方法,对含TiO2纳米颗粒的镍复合涂层进行了表征。在3.5% NaCl溶液中测定5 g/L和10 g/L TiO2浓度下Ni-TiO2的电流密度值表明,含TiO2纳米颗粒复合表面的镍的腐蚀过程比纯镍慢。与电沉积纯镍相比,TiO2颗粒嵌入在电镀镍中,增加了极化电阻,降低了腐蚀速率。在3.5% NaCl开路电位(OCP)下得到的电化学阻抗谱显示,在所有情况下极化电阻都随时间增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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