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首页> 外文期刊>X-Ray Spectrometry: An International Journal >High-lateral resolution X-ray fluorescence microspectroscopy and dynamic mathematical modelling as tools for the study of electrodeposited electrocatalysts
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High-lateral resolution X-ray fluorescence microspectroscopy and dynamic mathematical modelling as tools for the study of electrodeposited electrocatalysts

机译:高侧向分辨率X射线荧光显微光谱和动态数学建模作为研究电沉积电催化剂的工具

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摘要

In this paper, we report on the use of high-space resolution soft X-ray fluorescence microspectroscopy for the study of electrodeposited composites containing catalytic ternary metal nanostructures. X-ray fluorescence maps are interpreted in terms of a dynamic mathematical model of the electrode morphology and metal space distribution, allowing to reproduce the observed space patterns and electrochemical transients by assigning an appropriate set of electrokinetic parameters. The discussed materials-science case is the electrochemical growth of a Mn-Mg-Cu-polypyrrole nanocomposite electrocatalyst material - free of expensive Pt and environmentally unfriendly Co - with promising performance for fuel-cell oxygen electrodes. The synergy of high-resolution compositional mapping with electrokinetic modelling not only provides the general rationale for quantitative use of potentially large compositional distribution datasets but also yields unprecedented insight into the specific catalyst synthesis process. The expounded application is just a prototypical case study of a more general approach, which can be employed for the understanding of electrochemical material science processes, both in situ and ex situ, as well as for the characterisation of the corresponding products, with no other limitations in principle than X-ray transmission and beam damage. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:在本文中,我们报道了使用高空间分辨率软X射线荧光显微技术研究含催化三元金属纳米结构的电沉积复合材料的研究。 X射线荧光图根据电极形态和金属空间分布的动态数学模型进行解释,从而可以通过分配一组合适的电动参数来重现观察到的空间图案和电化学瞬变。讨论的材料科学案例是Mn-Mg-Cu-聚吡咯纳米复合电催化剂材料的电化学生长-不含昂贵的Pt和对环境有害的Co-具有对燃料电池氧电极的良好性能。高分辨率成分映射与电动建模的协同作用,不仅为定量使用潜在的大型成分分布数据集提供了一般原理,而且还提供了对特定催化剂合成过程的空前洞察力。阐述的应用只是更通用方法的原型案例研究,可用于了解原位和异位电化学材料科学过程,以及表征相应的产品,没有其他限制原则上比X射线透射和光束损伤大。版权所有(C)2015 John Wiley&Sons,Ltd.

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