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首页> 外文期刊>Electrochimica Acta >Influence of disodium ethylenediaminetetraacetate on zinc electrodeposition process and on the morphology, chemical composition and structure of the electrodeposits
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Influence of disodium ethylenediaminetetraacetate on zinc electrodeposition process and on the morphology, chemical composition and structure of the electrodeposits

机译:乙二胺四乙酸二钠对锌电沉积过程以及电沉积形态,化学成分和结构的影响

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摘要

Zinc electrodeposition on 1010 steel substrate, from an alkaline solution containing various EDTA concentrations, was investigated by cyclic voltammetry. The analysis of the voltammetric curves, showed, irrespective of EDTA concentration, the presence of a well defined pre-bulk region (region peak C_0), where the Zn underpotential deposition (UPD), hydrogen evolution reaction (HER) and reduction of iron oxide compete, which was followed by region of peak c_1, where Zn bulk electrodeposition (overpotential deposition (OPD)) occurred. AFM and XRF analysis of Zn electrodeposit on 1010 steel substrate produced voltammetrically in the region of peak C_0 showed presence of Zn. These results corroborate those obtained by cyclic voltammetry, i.e., that Zn UPD occurred in the region of peak C_0. The morphological, structural and the chemical composition characterization of the Zn electrodeposits prepared potentiostatically at -1.60 V, were performed by SEM, XRD and EDS, respectively. SEM images showed that the size of Zn crystallites produced at deposition charge densities (q_d) of 2.0 C cm~(-2) and 10.0 C cm~(-2) decreased in the presence of EDTA, except at 0.20 M EDTA and q_d 10.0 C cm~(-2). EDS analysis showed that incorporation of oxygen in the electrodeposits depended on both q_d and EDTA concentration. XRD patterns of the electrodeposits produced indicated only phase of pure Zn, with various reflections, irrespective the presence of EDTA and q_d. These electrodeposits exhibited crystallites preferentially oriented parallel to the (002) plane. Although EDTA led to morphological and chemical composition changes, it did not produce significant micro-structural changes, which could lead to different crystallographic orientations.
机译:通过循环伏安法研究了在1010钢基材上的锌电沉积,它是从含有各种EDTA浓度的碱性溶液中进行的。伏安曲线的分析表明,与EDTA浓度无关,存在定义明确的前体区域(区域峰C_0),其中Zn欠电位沉积(UPD),氢释放反应(HER)和氧化铁还原竞争,然后是峰c_1的区域,在该区域中发生Zn体电沉积(超电势沉积(OPD))。用AFM和XRF分析在峰C_0区域内伏安法生产的1010钢基底上的电沉积锌,表明存在锌。这些结果证实了通过循环伏安法获得的结果,即,Zn UPD出现在峰C_0的区域。分别通过SEM,XRD和EDS对在-1.60 V恒电位制备的Zn电沉积物的形态,结构和化学组成进行了表征。 SEM图像表明,在EDTA存在下,沉积电荷密度(q_d)分别为2.0 C cm〜(-2)和10.0 C cm〜(-2)时产生的Zn微晶尺寸减小,除了在0.20 M EDTA和q_d 10.0下存在。厘米〜(-2)。 EDS分析表明,电沉积中的氧含量取决于q_d和EDTA浓度。所产生的电沉积物的XRD图谱仅显示纯Zn的相,具有各种反射,与EDTA和q_d的存在无关。这些电沉积物表现出优选平行于(002)平面取向的微晶。尽管EDTA导致了形态和化学组成的变化,但并未产生显着的微观结构变化,这可能导致不同的晶体学取向。

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