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Agglomeration and Cleaning of Carbon Supported Palladium Nanopartieles in Electrochemical Environment

机译:电化学环境下碳载钯纳米粒子的团聚与清洁

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Here we investigate the electrochemical behavior of Pd/C synthesized by reduction with ethylene glycol in the presence of polyvinylpyrrolidone (EG-PVP). EG-PVP produces nanopartieles (NPs) with a narrow size distribution, but some of them remain covered by impurities after the synthesis. After successive voltammetric cycles, NPs become cleaner, but some agglomeration and structural modification occur; these effects affect the electrochemical behavior of Pd/ C in different ways, so we used CO as a probe to better understand the processes taking place. CO stripping shows that the general features of the multiple oxidation peaks change with the number of cycles. Possibly, CO and OH from different NPs react when the particles agglomerate, contributing to CO stripping changes. Finally, different active areas are found when the charges involved in CO oxidation and PdO reduction are compared. Such differences are rationalized in terms of a balance between the increase of sites which promote the oxidation of CO and the loss of area provoked by the growing of the particles.
机译:在这里,我们研究了在聚乙烯吡咯烷酮(EG-PVP)存在下用乙二醇还原合成的Pd / C的电化学行为。 EG-PVP生产的纳米颗粒(NPs)的粒径分布较窄,但其中一些在合成后仍被杂质覆盖。经过连续的伏安循环后,NPs变得更清洁,但会发生一些团聚和结构修饰。这些影响以不同方式影响Pd / C的电化学行为,因此我们使用CO作为探针来更好地了解发生的过程。 CO汽提表明,多个氧化峰的一般特征随循环数而变化。可能的是,当颗粒团聚时,来自不同NP的CO和OH反应,从而导致CO汽提变化。最后,当比较涉及CO氧化和PdO还原的电荷时,发现了不同的活性区域。根据促进CO氧化的位点的增加与颗粒生长引起的面积损失之间的平衡,使这种差异合理化。

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