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Low Pt-content ternary PdCuPt nanodendrites: an efficient electrocatalyst for oxygen reduction reaction

机译:低Pt-content三元PdCuPt nanodendrites:一个高效的electrocatalyst氧气减少反应

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Dendritic nanostructures are capturing increasing attention in electrocatalysis owing to their unique structural features and low density. Herein, we report for the first time, bromide ion mediated synthesis of low Pt-content PdCuPt ternary nanodendrites via galvanic replacement reaction between a Pt precursor and a PdCu template in aqueous solution. The experimental results show that the ternary PdCuPt nanodendrites present enhanced electrocatalytic performance for oxygen reduction reaction in acid solution compared with commercial Pt/C as well as some state-of-the-art catalysts. In detail, the mass activity of the PdCuPt catalyst with optimized composition is 1.73 A mg(Pt)(-1) at 0.85 V vs. RHE, which is 14 times higher than that of a commercial Pt/C catalyst. Moreover, the long-term stability test demonstrates its better durability in acid solution. After 5k cycles, there is still 70% electrochemical surface area maintained. This method provides an efficient method to synthesize trimetallic alloys with controllable composition and specific structure for oxygen reduction reaction.
机译:树枝状纳米结构是捕捉增加电催化作用可归结于他们的关注独特的结构特点和低密度。在此,我们报告第一次,溴离子介导的合成低Pt-content PdCuPt三元nanodendrites通过电更换Pt前体和PdCu之间的反应模板在水溶液中。结果表明,三元PdCuPtnanodendrites呈现增强electrocatalytic在酸氧还原反应的性能解决方案与商业Pt / C以及一些先进的催化剂。PdCuPt催化剂的质量活动优化组合是1.73毫克(Pt) (1)0.85 V和流值,这是14倍一个商业的Pt / C催化剂。长期稳定性试验表明其更好耐用性在酸溶液。还有电化学表面积的70%维护。方法合成trimetallic合金可控的组成和具体结构对氧还原反应。

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