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Investigating local oxidation processes in Fe thin films in a water vapor environment by in situ liquid cell TEM

机译:原位液体细胞温度研究水蒸气环境中Fe薄膜的局部氧化过程

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摘要

Automated image recognition and analysis techniques were combined with liquid cell transmission electron microscopy to explore the oxidation kinetics of nanocrystalline Fe thin films in a water vapor environment. From in situ microscopy experiments, localized oxidation was observed to initiate in the film then propagate in an unsteady fashion, alternatingly arresting and progressing. The oxidation front propagation occurred via new oxidation sites initiating 10s of nm ahead of the existing front rather than through a continuous expansion mechanism. The oxidation rate was seen to be highly dependent on electron dose rate, with increasing electron dose rate accelerating the oxidation front propagation and increasing the density of oxidation initiation sites. The in situ experiments were also performed in diffraction space where it was seen that Fe2O3 was formed during oxidation. Coupling in situ microscopy with automated image analysis creates new opportunities for studying the early stages of localized corrosion by providing direct observation of oxidation propagation as well as quantification of the oxidation rates and rapid identification of byproducts.
机译:将自动图像识别和分析技术与液体细胞透射电子显微镜相结合,探讨水蒸气环境中纳米晶二薄膜的氧化动力学。从原位显微镜实验中,观察到局部氧化在薄膜中引发然后以不稳定的方式繁殖,交替地捕捉和进展。通过新的氧化点发生氧化前繁殖,在现有的前部而不是通过连续的膨胀机制之前引发10S的NM。认为氧化速率高度依赖于电子剂量率,随着电子剂量速率的增加,加速氧化前传播并增加氧化起始位点的密度。也在衍射空间中进行原位实验,其中可以看出在氧化过程中形成Fe 2 O 3。通过自动图像分析的原位显微镜耦合可以通过提供直接观察氧化繁殖以及氧化速率的定量和副产物的快速鉴定来研究局部腐蚀的早期阶段的新机会。

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