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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Effect of NaNO3 concentration on anodic electrochemical behavior on the Sb surface in NaOH solution
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Effect of NaNO3 concentration on anodic electrochemical behavior on the Sb surface in NaOH solution

机译:纳米3浓度对NaOH溶液中Sb表面阳极电化学行为的影响

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The effect of NaNO3 concentration on the anodic electrochemical behavior of antimony in 4 M NaOH solution was investigated using cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS) analyses. The mechanism of NO (3) (-) concentration effect on the anodic electrochemical behavior of antimony was proposed, and its availability was confirmed by experimental results. The effect of NaNO3 on the anodic behavior of antimony in NaOH solution can be interpreted as a stepwise formation of different antimony compounds with different NaNO3 concentrations. Metallic antimony is apt to be oxidized into Sb2O3 within the NaNO3 concentration range of 0-0.48 M. NaSbO3 can be found on the antimony surface when the NaNO3 concentration increases gradually. Insoluable NaSbO3 inhibits the anodic oxidation of antimony due to its shielding effect on the mass transport of the reactants and products. Surface morphology and composition were analyzed by X-ray photoelectron spectroscopy (XPS), scanning electronic microscopy (SEM), and electron dispersion spectroscopy (EDS) analyses. Results indicate that the anodic oxidation layer is composed of Sb2O3, NaSbO3, and Sb. The atomic proportion of antimony in the form of NaSbO3 increases with increasing NaNO3 concentration due to the powerful oxidizing property of NaNO3.
机译:使用循环伏安法(CV)和电化学阻抗光谱(EIS)分析研究了纳米3浓度对4M NaOH溶液中锑阳极电化学行为的影响。提出了NO(3)( - )浓度效应对锑的阳极电化学行为的机制,通过实验结果证实了其可用性。 NaOH溶液中锑阳极行为对NaOH溶液的阳极行为的影响可以被解释为具有不同纳米3浓度的不同锑化合物的逐步形成。金属锑在纳米3浓度范围内掺入Sb2O 3中,当纳米3浓度逐渐增加时,可以在锑表面上找到抗锑表面。不可溶性的NASBO3由于其对反应物和产物的质量传输的屏蔽效应,抑制锑的阳极氧化。通过X射线光电子能谱(XPS),扫描电子显微镜(SEM)和电子分散光谱(EDS)分析来分析表面形态和组合物。结果表明阳极氧化层由SB2O3,NASBO 3和Sb组成。由于纳米3的强烈氧化性能,NASBO3形式的抗锑的原子比例随着纳米3浓度的增加而增加。

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