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Iridium Oxide-Polymer Nanocomposite Electrode Materials for Water Oxidation

机译:用于水氧化的氧化铱聚合物纳米复合电极材料

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Nanocomposite anode materials for water oxidation have been readily synthesized by electrodeposition of iridium oxide nanoparticles into poly(pyrrole-alkylammonium) films, previously deposited onto carbon electrodes by oxidative electropolymeriza-tion of a pyrrole-alkylammonium monomer. The nanocomposite films were characterized by electrochemistry, transmission electron microscopy, and atomic force microscopy. They showed an efficient electrocatalytic activity toward the oxygen evolution reaction. Data from Tafel plots have demonstrated that the catalytic activity of the iridium oxide nanoparticles is maintained following their inclusion in the polymer matrix. Bulk electrolysis of water at carbon foam modified electrodes have shown that the iridium oxide—polymer composite presents a higher catalytic activity and a better operational stability than regular oxide films.
机译:通过将氧化铱纳米粒子电沉积到聚(吡咯-烷基铵)薄膜中,可以很容易地合成用于水氧化的纳米复合阳极材料,该薄膜事先通过吡咯-烷基铵单体的氧化电聚合沉积到碳电极上。通过电化学,透射电子显微镜和原子力显微镜对纳米复合膜进行了表征。它们显示了对氧释放反应的有效电催化活性。来自Tafel图的数据表明,氧化铱纳米颗粒包含在聚合物基质中后,其催化活性得以保持。在碳泡沫改性电极上大量电解水显示,氧化铱-聚合物复合材料比常规氧化膜具有更高的催化活性和更好的操作稳定性。

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