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Properties of passive film formed on 316L/2205 stainless steel by Mott-Schottky theory and constant current polarization method 被引量:11

Properties of passive film formed on 316L/2205 stainless steel by Mott-Schottky theory and constant current polarization method
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摘要 Semiconductor properties of the passive films formed on 316L and 2205 stainless steel were studied by Electrochemical Impedance Spectroscopy(EIS) in the high-temperature acetic acid.The results showed that the corrosion resistance of 2205 was higher than that of 316L,and the passive films formed on 316L and 2205 stainless steel showed p-type and n-type semiconductor behavior,respectively.Destruction and self-repairing of passive films were studied by using the constant current polarization method.The results showed that for 316L,the self-repairing process would occur when the destruction was lower than the critical extent or it would not do;for 2205,the self-repairing process only happened in a short time when the destruction was in the same extent as 316L. Semiconductor properties of the passive films formed on 316L and 2205stainless steel were studied by Electrochemical Impedance Spectroscopy (EIS) in the high-temperature acetic acid. The results showed that the corrosion resistance of 2205 was higher than that of 316L, and the passive films formed on 316L and 2205 stainless steel showed p-type and n-type semiconductor behavior, respectively. Destruction and self-repairing of passive films were studied by using the constant current polarization method. The results showed that for 316L, the self-repairing process would occur when the destruction was lower than the critical extent or it would not do; for 2205, the self-repairing process only happened in a short time when the destruction was in the same extent as 316L.
出处 《Chinese Science Bulletin》 SCIE EI CAS 2009年第13期2239-2246,共8页
基金 Supported by the National Natural Science Foundation of China(Grant No.50871020)
关键词 半导体性能 不锈钢 钝化膜 膜形成 极化法 恒流 肖特基 电化学阻抗谱 acetic acid, corrosion, semiconductor, stainless steel
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