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Physical and electrochemical behavior of black nickel coatings in presence of KNO3 and imidazole additives

机译:KNO3和咪唑添加剂存在下黑镍涂层的物理和电化学行为

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摘要

As a unique type of nickel films, black nickel coatings possess remarkable optical and electrical properties but limited applications owing to their poor structure and corrosion resistance. In this study, black nickel coatings were electrodeposited on St37 steel and optimized utilizing nickel Watts bath modified with potassium nitrate. By investigating the coating structure and current efficiency (CE), optimum bath was determined as 190 g/L NiSO4, 25 g/L NiCl2, 30 g/L H3BO3, and 25 g/L KNO3 which resulted in CE of 79% and a compact structure. Next, cyclic voltammetry and chronoamperometric tests revealed that the dominant deposition mechanism was instantaneous nucleation. Besides studying the changes in CE and cathodic polarization, the improvement of properties with addition of imidazole was investigated by studying the surface morphology, phase structure, light absorption, and corrosion behavior using SEM, XRD, differential reflectance spectroscopy (DRS), potentiodynamic polarization, and electrochemical impedance spectroscopy tests, respectively. Adding imidazole to the deposition bath reduced the grain size and crack width from micro-scale to nano-scale, without affecting its nucleation mechanism or light absorption property. Also, imidazole enhanced the corrosion resistance of the black nickel coatings by 62% reduction of corrosion current density and increasing its polarization resistance by 58%.
机译:作为一种独特的镍膜,黑镍膜具有优异的光学和电学性能,但由于其结构和耐腐蚀性较差,应用受到限制。在本研究中,在St37钢上电沉积黑镍涂层,并利用硝酸钾改性的镍瓦茨镀液进行优化。通过对涂层结构和电流效率(CE)的研究,确定了最佳镀液为190g/L NiSO4、25g/L NiCl2、30g/L H3BO3和25g/L KNO3,其CE为79%,结构紧凑。接下来,循环伏安法和计时电流测试表明,主要的沉积机制是瞬时成核。除了研究铈和阴极极化的变化外,还通过SEM、XRD、差分反射光谱(DRS)、动电位极化和电化学阻抗谱测试研究了添加咪唑后的表面形貌、相结构、光吸收和腐蚀行为。在沉积液中加入咪唑,可以将晶粒尺寸和裂纹宽度从微米级减小到纳米级,而不影响其成核机理和光吸收性能。此外,咪唑提高了黑镍涂层的耐腐蚀性,腐蚀电流密度降低了62%,极化电阻提高了58%。

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