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Combinatorial electrochemistry on Al–Fe alloys

机译:铝铁合金的组合电化学

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摘要

Combinatorial material development was combined with high throughput microelectrochemistry to allow an efficient but comprehensive investigation of the interface chemistry of Al rich Al–Fe alloys as a function of their chemical composition. Composition spread thin films with a linear composition gradient were produced by thermal codeposition. A scanning droplet cell was used to determine the open circuit potential and to perform successive anodic oxide formation with intermittent impedance spectroscopy. The film formation factor, the relative permittivity of the oxides and the onset potential of oxide formation were determined quantitatively as function of the composition with a resolution of 0.5 at.%. An unexpected synergistic effect is found in a very narrow composition range between 9 and 12 at.% Fe. This effect, which shifts the onset potential by nearly 1 V, is discussed in terms of a local accumulation of Fe resulting in a redox stabilisation of space charge layer formation during high-field oxide growth. The results are supported by composition and depth dependent XPS measurements.
机译:组合材料的开发与高通量微电化学技术相结合,可以对富含Al-Fe合金的界面化学随其化学成分的变化进行有效而全面的研究。通过热共沉积制备具有线性组成梯度的组成扩散薄膜。扫描液滴池用于确定开路电势,并通过间歇性阻抗谱进行连续的阳极氧化。定量地确定了膜形成因子,氧化物的相对介电常数和氧化物形成的起始电势,其作为组合物的函数,分辨率为0.5原子%。在9至12 at。%Fe之间的非常窄的组成范围内发现了出乎意料的协同作用。讨论了此效应,该效应将起始电势偏移了将近1 V,这是根据Fe的局部累积而引起的,该累积会导致高场氧化物生长期间空间电荷层形成的氧化还原稳定。结果由成分和深度相关的XPS测量支持。

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