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The Effect of Cyclic Lactams and Their Structural Analogs on the Surface Morphology, Coating Properties, and Electroreduction Kinetics of Cu(II) Ions

机译:循环内酰胺与其结构性类似物对Cu(II)离子表面形态,涂布性能和电荷动力学的影响

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The behavior of cyclic compounds in copper-plating sulfate electrolytes is directly determined by their structure (the nature of a heteroatom in a ring, the size of the cycle, and the presence of side carbonyl groups). The efficiency coefficient increases with an increase in the volume concentration of an additive in the presence of nitrogen-containing heterocycles, whereas that of oxygen-containing ones slightly depends on c(L)(0). Calculation of the kinetic parameters of the process confirmed that kinetics of a cathode reaction is mainly due to the nature of a heteroatom in the cycle. Combined analysis of chronopotentiometry and impedance data showed that the complexes formed in the surface layer block the electrode surface, increase the Psi' potential, and make the discharge of metal ions difficult, with their inhibitory effect increasing with an increase in ligand concentration. Effective control of deposition rate, morphology, and properties of coatings is possible as a result of changes in the nature, structure, and volume concentration of the additives.
机译:在铜镀硫酸盐电解质中的循环化合物的行为直接通过它们的结构(环中杂原子的性质,循环尺寸和侧羰基的存在)直接确定。效率系数随着含氮杂环存在的添加剂的体积浓度的增加而增加,而含氧的含量略微取决于C(1)(0)。该方法的动力学参数的计算证实了阴极反应的动力学主要是由于循环中杂原子的性质。血管发育测量测量计和阻抗数据的组合分析表明,在表面层中形成的复合物阻断电极表面,增加PSI的电位,并使金属离子的放电难以随着配体浓度的增加而增加。由于添加剂的性质,结构和体积浓度的变化,可以有效地控制沉积速率,形态和涂层的性质。

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