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A novel method for corrosion reaction analysis by fourier transform electrochemical impedance spectroscopy: Corrosion of 9cr-1 mo ferritic steel in 0.050M H_2SO_4

机译:傅里叶变换电化学阻抗谱分析腐蚀反应的新方法:9cr-1铁素体钢在0.050M H_2SO_4中的腐蚀

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摘要

We hereby report a novel method of analyzing corrosion reactions by real-time Fourier transform electrochemical impedance (FTEIS) spectroscopy and applied it to the corrosion study of 9Cr-1 Mo ferritic steel in 0.050M sulfuric acid. The real-time monitoring was achieved by running small signal staircase linear sweep voltammetric experiments, in which each voltage step and the chronoamperometric current obtained thereupon were converted to impedance data by first converting them into frequency domain employing Fourier transformation followed by acquisition of impedance spectra. The technique provided real-time potentiodynamic impedance data in real time while the potential was being swept. A large body of impedance data thus obtained as a function of swept potential allowed not only corrosion potentials and currents but also a full set of kinetic parameters of reactions involved in corrosion to be evaluated. The quantitative data obtained for corrosion also help better elucidate the corrosion mechanism at the steel electrode/electrolyte interface.
机译:我们在此报告一种通过实时傅立叶变换电化学阻抗(FTEIS)光谱分析腐蚀反应的新方法,并将其应用于9Cr-1 Mo铁素体钢在0.050M硫酸中的腐蚀研究。通过运行小信号阶梯线性扫描伏安法实验来实现实时监控,在该实验中,首先通过使用傅里叶变换将它们转换到频域,然后获取阻抗谱,然后将由此获得的每个电压阶跃和计时电流转换为阻抗数据。该技术在扫描电势时实时提供了实时的电位动力学阻抗数据。如此获得的大量阻抗数据作为扫描电势的函数,不仅允许腐蚀电势和电流,而且还可以评估与腐蚀有关的反应的完整动力学参数。获得的腐蚀定量数据还有助于更好地阐明钢电极/电解质界面处的腐蚀机理。

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