首页> 外文期刊>Journal of Raman Spectroscopy: An International Journal for Original Work in All Aspects of Raman Spectroscopy, Including Higher Order Processes, and Also Brillouin- and Rayleigh Scattering >Analysis of the composition of the passive film on iron under pitting conditions in 0.05 M NaOH/NaCl using Raman microscopy in situ with anodic polarisation and MCR-ALS
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Analysis of the composition of the passive film on iron under pitting conditions in 0.05 M NaOH/NaCl using Raman microscopy in situ with anodic polarisation and MCR-ALS

机译:使用阳极极化和MCR-ALS原位拉曼显微镜分析点蚀条件下在0.05 M NaOH / NaCl中点蚀条件下铁上钝化膜的成分

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摘要

The composition of the surface film formed on pure iron was investigated in a solution of 0.05 M NaOH and 0.05 M NaCl. Raman spectra of the film were recorded in situ during anodic polarisation over the passive region after addition of the NaCl to the electrolyte, under conditions of preresonance enhancement using excitation at 636.4 nm. Multivariate curve resolution with alternating least squares analysis was applied to the spectra to measure the relative amounts of different iron oxide and oxyhydroxides in the film at different potentials. The water content was also determined in this way from Raman spectra recorded using excitation at 514.5 nm. It was found that the composition of the film and the amount of incorporated water were influenced by the applied anodic potential. The results show that stable pitting can occur when the composition changes from the primary constituents β-FeOOH and Green Complex (a hydrated, amorphous magnetite) with smaller amounts of γ-Fe _2O _3 and γ-FeOOH, to δ-FeOOH and Green Complex, simultaneously with a reduction in water content. These changes result in conditions that favour the rate of localised breakdown of the film by Cl - ions over the rate of repassivation by water in the passive film.
机译:在0.05 M NaOH和0.05 M NaCl的溶液中研究了在纯铁上形成的表面膜的组成。在将NaCl添加到电解质中之后,在使用636.4 nm激发的预共振增强条件下,在无源区域的阳极极化过程中原位记录了薄膜的拉曼光谱。将具有交替最小二乘法分析的多元曲线分辨率应用于光谱,以测量膜在不同电势下的不同氧化铁和羟基氧化铁的相对量。还通过使用在514.5nm下激发记录的拉曼光谱以这种方式确定水含量。发现膜的组成和水的掺入量受所施加的阳极电势的影响。结果表明,当组成从主要成分β-FeOOH和绿色复合物(一种水合的无定形磁铁矿)和少量的γ-Fe_2O _3和γ-FeOOH变为δ-FeOOH和绿色复合物时,会出现稳定的点蚀,同时减少水含量。这些变化导致形成了这样的条件,该条件有利于Cl-离子对膜的局部击穿速率,而不是被动膜中水对水的重新钝化速率。

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