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Facile synthesis of Rh-Pd alloy nanodendrites as highly active and durable electrocatalysts for oxygen reduction reaction

机译:简单的合成Rh-Pd合金nanodendrites高度活跃的耐用electrocatalysts氧还原反应

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摘要

In addition to activity, durability of Pd-based catalysts in a highly corrosive medium has become one of the most important barriers to limit their industrial applications such as low-temperature fuel cell technologies. Here, Rh with a unique capability to resist against oxidation etching was incorporated into Pd-based catalysts to enhance both their activity and durability for oxygen reduction reaction (ORR). This idea was achieved through the synthesis of the Rh-Pd alloy nanodendrites by co-reducing Rh and Pd salt precursors in oleylamine (OAm) containing cetyltrimethylammonium bromide (CTAB). In this synthesis, Rh-Pd alloy nanostructures with Rh-Pd atomic ratios from 19 :1 to 1: 4 were generated by varying the molar ratios of Rh and Pd salt precursors. Interestingly, this variation of the molar ratios of the precursors from Rh rich to Pd rich would lead to the shape evolution of Rh-Pd alloy from dendritic nanostructures to spherical aggregations. We found that Br~0 ions derived from CTAB were also indispensible to the production of Rh-Pd alloy nanodendrites. Owing to the addition of highly stable Rh as well as the radical structure with a large number of low-coordinated sites on the arms, Rh-Pd alloy nanodendrites with a Rh-Pd atomic ratio of 4 :1 (Rh_(80)Pd_(20)) exhibited a substantially enhanced electrocatalytic performance towards ORR with a 5% loss of mass activity during the accelerated stability test for 10 000 cycles compared to ~50% loss of the commercial Pt/C (E-TEK).
机译:除了活动,Pd-based耐久性催化剂在高腐蚀介质其中一个最重要的壁垒限制他们工业应用,如低温燃料电池技术。抗氧化腐蚀的能力被纳入Pd-based催化剂增强他们的活动和耐久性氧还原反应(ORR)。通过Rh-Pd合金的合成nanodendrites co-reducing Rh和Pd盐油胺的前体(OAm)包含cetyltrimethylammonium溴铵(CTAB)。合成,与Rh-Pd Rh-Pd合金纳米结构原子比率从19:1 - 1:4生成通过改变Rh和Pd盐的摩尔比率体细胞。摩尔比率Rh富人Pd的前兆富人会导致Rh-Pd的形状演化从树突合金球形纳米结构聚合。从CTAB也不可或缺nanodendrites Rh-Pd合金的生产。的Rh以及高度稳定激进和大量的结构low-coordinated网站手臂,Rh-Pd合金nanodendrites Rh-Pd原子比例的4:1(Rh_ (80) Pd_(20)表现出显著增强对奥尔electrocatalytic性能大规模活动期间损失了5%加速稳定性试验10 000次~ 50%的损失相比商业Pt / C(E-TEK)。

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  • 来源
    《Nanoscale》 |2014年第12期|7012-7018|共7页
  • 作者

    Yue Qi; Jianbo Wu; Hui Zhang;

  • 作者单位

    Department of Chemical & Biomolecular Engineering, University of Illinois at Urbana- Champaign, 600 South Mathews Avenue, 114 Roger Adams Laboratory, Urbana, Illinois 61801, USA;

    State Key Laboratory of Silicon Materials, Department of Materials Science and Engineering, Cyrus Tang Center for Sensor Materials and Applications, Zhejiang University, Hangzhou, Zhejiang 310027, P. R China.;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类
  • 关键词

    MOLAR RATIO; stability study; Durabilitycetrimonium bromideMETAL ALLOYsynthesiselectrocatalysts;

    机译:摩尔比率;稳定性研究;DurabilitycetrimoniumbromideMETAL ALLOYsynthesiselectrocatalysts;

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