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Interrogation of bimetallic particle oxidation in three dimensions at the nanoscale

机译:在纳米尺度上对双金属颗粒氧化的询问

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摘要

An understanding of bimetallic alloy oxidation is key to the design of hollow-structured binary oxides and the optimization of their catalytic performance. However, one roadblock encountered in studying these binary oxide systems is the difficulty in describing the heterogeneities that occur in both structure and chemistry as a function of reaction coordinate. This is due to the complexity of the three-dimensional mosaic patterns that occur in these heterogeneous binary systems. By combining real-time imaging and chemical-sensitive electron tomography, we show that it is possible to characterize these systems with simultaneous nanoscale and chemical detail. We find that there is oxidation-induced chemical segregation occurring on both external and internal surfaces. Additionally, there is another layer of complexity that occurs during the oxidation, namely that the morphology of the initial oxide surface can change the oxidation modality. This work characterizes the pathways that can control the morphology in binary oxide materials.
机译:对双金属合金氧化的理解是中空结构二元氧化物设计及其催化性能优化的关键。但是,研究这些二元氧化物系统遇到的一个障碍是难以描述结构和化学反应中异质性随反应坐标的变化。这是由于在这些异构二进制系统中出现的三维马赛克图案的复杂性。通过结合实时成像和化学敏感的电子断层扫描,我们表明可以同时纳米级和化学细节表征这些系统。我们发现,在外表面和内表面都发生了氧化诱导的化学偏析。此外,在氧化过程中还会发生另一层复杂性,即初始氧化物表面的形态会改变氧化方式。这项工作的特点是可以控制二元氧化物材料形态的途径。

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