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Electronic properties and corrosion resistance of passive films on austenitic and duplex stainless steels

机译:奥氏体和双相不锈钢无源薄膜的电子性能和耐腐蚀

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摘要

Passive films were grown at constant potential in acidic (pH similar to 2) and alkaline (pH similar to 13) solutions on chromium, AISI 304L, AISI 316L and Duplex stainless steels. Passive films on chromium grow following a high field mechanism considering the presence of dissolution phenomena. According to the photoelectrochemical characterization, passive films on Cr have a bandgap of 3.4 eV when formed in acidic solution, and of 2.4 eV when formed in alkaline solution due to the formation of Cr(OH)(3). These films result to be poorly stable against anodic dissolution due to a very anodic flat band potential. Conversely, impedance and photoelectrochemical measurements proved that passive films on stainless steels are chromium rich oxide n-type semiconductors with a very high polarization resistance. Their band gap depends on the pH of the passivation solution and on the SS composition. (c) 2018 Elsevier Ltd. All rights reserved.
机译:在铬,AISI 304L,AISI 316L和双相不锈钢上生长无源薄膜的恒定电位和碱性(pH值类似于2)和碱性(pH值)溶液。 考虑到溶出现象存在的高现场机制后,铬上的被动薄膜生长。 根据光电化学表征,Cr上的被动膜在酸性溶液中形成时具有3.4eV的带隙,并且由于Cr(3)的形成,在碱性溶液中形成时2.4eV。 由于非常阳极的扁平带电位,这些薄膜与阳极溶解的稳定性差。 相反,阻抗和光电化学测量结果证明,不锈钢上的被动膜是富含氧化铬N型半导体,具有非常高的偏振电阻。 它们的带隙取决于钝化溶液的pH和SS组合物。 (c)2018年elestvier有限公司保留所有权利。

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