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首页> 外文期刊>材料と環境 >Comparative XPS Study of Silver and Copper Surfaces Exposed to Flowing Air Containing Low Concentration of Sulfur Dioxide
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Comparative XPS Study of Silver and Copper Surfaces Exposed to Flowing Air Containing Low Concentration of Sulfur Dioxide

机译:暴露于含低浓度二氧化硫的空气中的银和铜表面的XPS比较研究

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摘要

Sulfur dioxide (SO_2) is a typical gas affecting the atmospheric corrosion of metals, particularly outdoors. Although many studies have investigated the effect of SO_2 on the atmospheric corrosion of silver and copper, little is known about the early stage of their corrosion behavior. In this study we analyzed the chemical state of sulfur on silver and copper plates exposed to flowing air containing low concentrations (18 and 148 ppb) of SO_2 using X-ray photoelec-tron spectroscopy (XPS). The shapes of the spectra were the same for both concentrations, indicating that the chemical state of the analyzed elements did not depend on the SO_2 concentration. There was a difference in the chemical state of the sulfur between the silver and copper. Three peaks were observed in the S 2p XPS spectra for the silver originating from bisulfite, S_2O_5~(2-), S_2O_3~(2-), and S~(2-). The bisulfite resulted from SO_2 dissolution into the surface electrolyte, and the others resulted from the reduction of sulfurous acid. In contrast, only bisulfite was observed in the S 2p XPS spectra for the copper. It also originated from the dissolution of SO_2 into the surface electrolyte. The difference in the chemical state of the sulfur between the silver and copper is attributed to the presence of native oxides on the surface, which may have impeded the reduction of bisulfite.
机译:二氧化硫(SO_2)是一种典型的影响金属大气腐蚀的气体,特别是在户外。尽管许多研究已经研究了SO_2对银和铜的大气腐蚀的影响,但对其腐蚀行为的早期了解甚少。在这项研究中,我们使用X射线光电子能谱(XPS)分析了暴露于含有低浓度(18和148 ppb)SO_2的流动空气中的银和铜板上硫的化学状态。两种浓度的光谱形状都相同,表明分析元素的化学状态不取决于SO_2浓度。银和铜之间硫的化学状态有所不同。在亚硫酸氢盐,S_2O_5〜(2-),S_2O_3〜(2-)和S〜(2-)产生的银的S 2p XPS光谱中观察到三个峰。亚硫酸氢盐是由SO_2溶解在表面电解质中产生的,其他亚硫酸盐是由亚硫酸的还原产生的。相反,在铜的S 2p XPS光谱中仅观察到亚硫酸氢盐。这也源于SO_2溶解在表面电解质中。银和铜之间硫的化学状态的差异归因于表面天然氧化物的存在,这可能已阻止了亚硫酸氢盐的还原。

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