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Initial Surface Film on Magnesium Metal. A Characterization by X-ray Photoelectron Spectroscopy (XPS) and Photocurrent Spectroscopy (PCS)

机译:镁金属上的初始表面膜。通过X射线光电子能谱(XPS)和光电流能谱(PCS)进行表征

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摘要

A detailed investigation of the initial film grown on mechanically polished Mg electrodes has been carried out by ex situ X-ray Photoelectron Spectroscopy (XPS) and in situ Photocurrent Spectroscopy (PCS), allowing to reach a detailed picture of the passive layer structure. The XPS data show that the films formed soon after mechanical treatment and immersion in aqueous electrolyte have a bilayer structure, consisting of an ultra-thin MgO inner layer (∼2.5 nm) and a Mg(OH)2 external layer. The thickness of the Mg(OH)2 layer is a function of immersion time and solution temperature. After mechanical treatment and immersion in aqueous solution at room temperature, the MgO/Mg(OH)2 layer in some area of electrodes is so thin to allow an electron photoemission process from the Mg Fermi level to the electrolyte conduction band. Only internal photoemission processes are evidenced for Mg electrodes aged in NaOH at 80 °C, due the formation of a thicker Mg(OH)2 layer. From anodic photocurrent spectra an optical band gap of ∼4.25 eV has been estimated for Mg(OH)2, lower with respect to the optical gap of the corresponding anhydrous counterpart.
机译:通过异位X射线光电子能谱(XPS)和原位光电流能谱(PCS)已对在机械抛光的镁电极上生长的初始薄膜进行了详细研究,从而获得了无源层结构的详细图片。 XPS数据表明,在机械处理和浸入水性电解质后不久形成的膜具有双层结构,由超薄MgO内层(约2.5 nm)和Mg(OH)2外层组成。 Mg(OH)2层的厚度是浸渍时间和溶液温度的函数。经过机械处理并在室温下浸泡在水溶液中后,电极某些区域中的MgO / Mg(OH)2层非常薄,可以进行从Mg费米能级到电解质导带的电子发射过程。对于在80°C的NaOH中老化的Mg电极,只有内部光发射过程被证明,这是由于形成了较厚的Mg(OH)2层所致。根据阳极光电流光谱,Mg(OH)2的光学带隙约为4.25 eV,相对于相应的无水对应物的光学带隙而言较低。

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