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Cooperation behavior of iron and phosphorus in electrodeposition of zinc-iron-phosphorus coating

机译:铁和磷在锌铁磷镀层电沉积中的协同行为

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The co-operation behavior of iron and phosphorus in electrodeposition of Zn-Fe-P alloy onto copper from light acid chloride solutions (LACS) was investigated by means of cyclic voltammetry and steady-state polarization techniques. It was found that, under the experimental conditions, the phosphorous and the iron promote the reduction of each other and their contents in Zn-Fe-P coating change synchronously, which has been interpreted theoretically in the view of quantum chemistry. The theoretical results showed that, because the orbital radius of 4S of iron atom is shorter than that of zinc atom, the overlapping integral of iron and phosphorus (S_(Fe-p)) is smaller than that of zinc and phosphorus (S_(zn-p)) which resulted in the synchronous variation of the contents of the phosphorus and the iron in the electrodeposits, and which also showed that there exist the cooperative effect of phosphorus with iron series metal among their co-depositing coatings.
机译:通过循环伏安法和稳态极化技术研究了锌和铁磷合金在轻质氯化物溶液(LACS)上电沉积到铜上时铁和磷的协同行为。发现在实验条件下,磷和铁相互促进还原,并且锌-铁-磷涂层中它们的含量同步变化,这已从量子化学的角度进行了理论解释。理论结果表明,由于铁原子的4S轨道半径短于锌原子的轨道半径,因此铁和磷的重叠积分(S_(Fe-p))小于锌和磷的重叠积分(S_(zn -p))导致电沉积中磷和铁含量的同步变化,并且还表明磷和铁系金属在它们的共沉积涂层之间存在协同作用。

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