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Oxygen Reduction Reaction Electrocatalytic Activity of SAD-Pt/GLAD-Cr Nanorods

机译:SAD-Pt / GLAD-Cr纳米棒的氧还原反应电催化活性

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Nanorod arrays of chromium (Cr) were grown on glassy carbon (GC) electrodes by a dc magnetron sputtering glancing angle deposition (GLAD) technique. The Cr nanorods were used as low-cost, high surface area, metallic supports for a conformal layer of Pt thin film catalyst, as a potential low-loading electrocatalyst for the oxygen reduction reaction (ORR) in polymer electrolyte membrane (PEM) fuel cells. A dc magnetron sputtering small angle deposition (SAD) technique was utilized for a conformal coating of Pt on Cr nanorods. The ORR activity of SAD-Pt/GLAD-Cr electrodes was investigated using cyclic voltammetry (CV) and rotating-disk electrode (RDE) techniques in a 0.1 M HClO_4 solution at room temperature. A reference sample consisting of GLAD Cr nanorods coated with a Pt thin film deposited at normal incidence (θ = 0°) was prepared and compared with the SAD-Pt/GLAD-Cr nanorods. Compared to GLAD Cr nanorods coated with Pt thin film at θ = 0°, the SAD-Pt/GLAD-Cr nanorod electrode exhibited higher ECSA and area-specific and mass-specific ORR activity. These results indicate that the growth of catalyst layer on the base-metal nanorods by the SAD technique provides a more conformal and possibly a nanostructured coating, significantly enhancing the catalyst utilization.
机译:通过直流磁控溅射掠射角沉积(GLAD)技术在玻璃碳(GC)电极上生长铬(Cr)的纳米棒阵列。 Cr纳米棒用作Pt薄膜催化剂共形层的低成本,高表面积金属载体,还可用作聚合物电解质膜(PEM)燃料电池中氧还原反应(ORR)的潜在低负荷电催化剂。 。直流磁控溅射小角度沉积(SAD)技术用于在Cr纳米棒上保形涂覆Pt。使用循环伏安法(CV)和圆盘电极(RDE)技术在室温下于0.1 M HClO_4溶液中研究了SAD-Pt / GLAD-Cr电极的ORR活性。制备参考样品,该参考样品由涂有以垂直入射角(θ= 0°)沉积的Pt薄膜的GLAD Cr纳米棒组成,并与SAD-Pt / GLAD-Cr纳米棒进行比较。与在θ= 0°处涂有Pt薄膜的GLAD Cr纳米棒相比,SAD-Pt / GLAD-Cr纳米棒电极表现出更高的ECSA以及面积比和质量比的ORR活性。这些结果表明通过SAD技术在贱金属纳米棒上催化剂层的生长提供了更保形的并且可能是纳米结构的涂层,从而显着提高了催化剂的利用率。

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