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Initial oxidation of Fe-Cr alloys: in-situ STM and ex-situ SEM observation

机译:Fe-Cr合金的初始氧化:原位STM和异位SEM观察

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In order to understand the initial oxidation of Fe-Cr alloys a single crystal of Fe-15Cr (100) was oxidized at 440 deg C under controlled oxygen partial pressure in a UHV system and the surface morphology was observed using in situ STM (basic pressure 1 X 10~(-10)mbar); in addition, polycrystal-line Fe&15Cr was oxidized at 400 deg C in an IR-furnace in atmospheric air and the morphology was observed using ex situ SEM. The chemistry of the surface oxide layers was studied by XPS. Preparation of the single crystal in the UHV system did not lead to segregation of Cr to the surface during heating. In situ STM investigation showed that oxidation of Fe-Cr commenced by nucleation of Cr oxide on the surface, due to selective oxidation of Cr. When the Cr at the surface and at the interface was completely consumed by nucleation of Cr oxide, Fe oxidized and covered the initial Cr oxide nuclei, resulting in an Fe oxide layer on the surface. Ex situ experiments showed that initial oxidation of the mechanically prepared polycrystalline alloy depended on the defect distribution in the surface. It started with formation of whisker-type Fe oxides along defects and proceeded with spherical-type nucleation and growth of Fe oxide. In both experiments, the final product on the surface was Fe_2O_3.
机译:为了了解Fe-Cr合金的初始氧化,在440℃,UHV系统中受控氧分压下将Fe-15Cr(100)单晶氧化,并使用原位STM(基本压力1 X 10〜(-10)毫巴);另外,多晶线Fe&15Cr在红外炉中在大气中于400℃被氧化,并使用异位SEM观察其形态。通过XPS研究了表面氧化物层的化学性质。在UHV系统中制备单晶不会导致加热过程中Cr偏析到表面。原位STM研究表明,由于Cr的选择性氧化,Fe-Cr的氧化开始于表面的Cr氧化物成核。当表面和界面处的Cr通过Cr氧化物的成核而被完全消耗时,Fe氧化并覆盖了最初的Cr氧化物核,从而在表面上形成了Fe氧化物层。异位实验表明,机械制备的多晶合金的初始氧化取决于表面的缺陷分布。它开始于沿缺陷形成晶须型Fe氧化物,然后进行球形成核和Fe氧化物的生长。在两个实验中,表面上的最终产物都是Fe_2O_3。

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