Université Paris Cité, ITODYS, CNRS, 75013 Paris, France.
Anal Chem. 2023 Jul 4;95(26):9999-10007. doi: 10.1021/acs.analchem.3c01258. Epub 2023 Jun 16.
The communication within particle agglomerates in industrial alloys can have a significant impact on the macroscopic reactivity, putting a high demand on the adaptation of wide-field methodologies to clarify this phenomenon. In this work, we report the application of correlated optical microscopies probing both local pH and local surface chemical transformation correlated with identical location scanning electron microscopy to quantify the structure reactivity of particle agglomerates of foreign elements in the Al alloy. The optical operando analyses allow us (i) to reveal and quantify the local production of OH from proton and oxygen reduction at individual Si- or Fe-rich microparticles and (ii) to quantify (and model) the chemical communication between these active sites, within a few micrometer range, on the local chemical transformation of the material. Wide-field image analysis highlights the statistical importance of chemical communication that may introduce a new conceptual framework for the understanding of the mechanisms in related fields of charge transfer, electrocatalysis, and corrosion.
工业合金中颗粒团聚体内部的通讯会对宏观反应性产生重大影响,这就需要广泛应用各种方法来阐明这一现象。在这项工作中,我们报告了相关光学显微镜的应用,该显微镜同时探测局部 pH 值和局部表面化学转化,并与相同位置的扫描电子显微镜相关联,以量化铝合金中外来元素颗粒团聚体的结构反应性。光学在位分析使我们能够:(i) 揭示和量化单个富硅或富铁的 Si-或 Fe- 微颗粒中质子和氧还原产生的 OH 的局部生成;(ii) 量化(和建模)这些活性位点之间的化学通讯,在数微米范围内,对材料的局部化学转化进行量化。宽场图像分析突出了化学通讯的统计重要性,这可能为理解相关领域的电荷转移、电催化和腐蚀机制引入一个新概念框架。