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Palladium Content Effect on the Electrocatalytic Activity of Palladium-Polypyrrole Nanocomposite for Cathodic Reduction of Oxygen

机译:钯含量对钯-聚吡咯纳米复合材料对氧的阴极还原电催化活性的影响

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摘要

Application of a catalyst preparation method known as 'water-in-oil' microemulsion allowed to obtain a series of palladium/polypyrrole (Pd/PPY) electrocatalysts with various Pd contents (2-20 wt%) and Pd particle size within a narrow and similar range of 6-8 nm. The textural features of the samples (surface area, porosity) as well as the palladium phase (metal particle size, shape) were characterized by a number of techniques. Electrocatalytic activity of the prepared materials towards oxygen reduction reaction (ORR) was studied in 0.5 M H2SO4 using rotating ring disc electrode voltammetry (RRDE) and cyclic voltammetry techniques. All prepared Pd/PPY samples exhibited electrocatalytic activity towards ORR. At a constant palladium loading on the electrode, the polymer to Pd weight ratio was found to play a decisive role in the electrocatalytic performance of the samples. Their catalytic performance in terms of the increased reduction current and positively shifted half-wave potential (RRDE measurements) was improved when Pd content in polymer was grown from 2 to 12 wt% Pd. At the optimum Pd content, 10-12 wt%, the analysis of the RRDE data confirmed that molecular oxygen underwent mainly a desired four-electron reduction. By further increasing the Pd content and thus decreasing the PPY to Pd ratio, the selectivity to water continuously decreased while the fraction of undesired H2O2 product significantly increased. Therefore, a role of PPY to Pd weight ratio in the electrocatalytic performance of the investigated catalysts is discussed here.
机译:应用一种称为“油包水”微乳液的催化剂制备方法,可以得到一系列钯/聚吡咯(Pd / PPY)电催化剂,其钯含量不同(2-20 wt%),且Pd粒径窄而窄。 6-8 nm的相似范围。样品的结构特征(表面积,孔隙率)以及钯相(金属粒度,形状)通过多种技术进行了表征。使用旋转环盘电极伏安法(RRDE)和循环伏安法研究了制备的材料在0.5 M H2SO4中对氧还原反应(ORR)的电催化活性。所有制备的Pd / PPY样品均表现出对ORR的电催化活性。在电极上钯负载恒定的情况下,发现聚合物与Pd的重量比对样品的电催化性能起决定性作用。当聚合物中Pd的含量从2 wt%增至12 wt%时,就增加的还原电流和正向移动的半波电位(RRDE测量)而言,它们的催化性能得到了改善。在最佳Pd含量为10-12 wt%时,对RRDE数据的分析证实,分子氧主要经历了所需的四电子还原。通过进一步增加Pd含量并因此降低PPY与Pd的比率,对水的选择性不断降低,而不希望有的H2O2产物的比例显着增加。因此,本文讨论了PPY与Pd重量比在所研究催化剂的电催化性能中的作用。

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