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The electronic structure characterization of oxide film on bulk nanocrystalline 304 stainless teel in hydrochloric acid solution

机译:盐酸溶液中块状纳米晶304不锈钢氧化膜的电子结构表征

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摘要

The electronic structures and compositions of the two oxide films on bulk nanocrystalline 304 stainless steel (BN-SS304) and its conventional polycrystalline counterpart (CP-SS304) after 30 days' immersion test in 0.5 mol/L HCI solution at room temperature were studied by X-ray photoelectron spectroscopy. The enhanced uniform and pitting corrosion resistances of BN-SS304 were attributed to the larger resistance and better chemical stability of the oxide film on BN-SS304, the less corrosion rate of Cr~0 for BN-SS304 and the larger atomic percentage of Cr~(3+) in the oxide film on BN-SS304. The larger resistance of oxide film on BN-SS304 resulted from the less state densities of valence electrons around Fermi level in the oxide film on BN-SS304. The better chemical stability of oxide film on BN-SS304 was attributed to (1) the larger binding energies of Fe~(2+) 2p3/2, Fe~(3+) 2p3/2 and Cr~(3+) 2p3/2 in the oxide film on BN-SS304; (2) the larger atomic percentages of Cr~(3+) and Fe~(2+) in the oxide film on BN-SS304.
机译:通过室温下在0.5 mol / L HCl溶液中浸泡30天,研究了块状纳米晶304不锈钢(BN-SS304)和常规多晶对应物(CP-SS304)上两种氧化物膜的电子结构和组成。 X射线光电子能谱。 BN-SS304的均匀耐点蚀性能增强是因为BN-SS304上的氧化膜具有更大的耐腐蚀性和更好的化学稳定性,Cr〜0对BN-SS304的腐蚀速率较小以及Cr〜的原子百分数较大。 (3+)位于BN-SS304上的氧化膜中。 BN-SS304上氧化膜的电阻较大是由于BN-SS304上氧化膜中费米能级附近的价电子的态密度较小。 BN-SS304上的氧化膜具有更好的化学稳定性,这是由于(1)Fe〜(2+)2p3 / 2,Fe〜(3+)2p3 / 2和Cr〜(3+)2p3 / 2在BN-SS304上的氧化膜中; (2)BN-SS304氧化膜中Cr〜(3+)和Fe〜(2+)的原子百分比较大。

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