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首页> 外文期刊>Nanoscale >Synthesis of octahedral Pt-Ni-Ir yolk-shell nanoparticles and their catalysis in oxygen reduction and methanol oxidization under both acidic and alkaline conditions
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Synthesis of octahedral Pt-Ni-Ir yolk-shell nanoparticles and their catalysis in oxygen reduction and methanol oxidization under both acidic and alkaline conditions

机译:八面体的合成Pt-Ni-Ir yolk-shell纳米粒子及其催化氧气减少和甲醇氧化两种酸性和碱性条件下

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摘要

Fuel cells are expected to be one of the most promising alternatives to the increasingly scarce fossil fuels, and Pt is the most commonly used catalyst for anodic and cathodic electrochemical reactions. To realize large-scale commercialization, it is most urgent to improve the efficiency of Pt and reduce the cost. Here, we synthesized an octahedral Pt-Ni-Ir yolk-shell catalyst through stepwise co-deposition (SCD), surface-limited Pt deposition (SLPD) and Ni-coordinating etching (NCE) processes. Experimental studies showed that the catalytic activities of the as-prepared trimetal yolk-shell catalyst were several times higher than that of the commercial Pt/C towards oxygen reduction and methanol oxidization under both acidic and alkaline conditions. This work may be extended to designing other multimetallic functional materials with complex hierarchical nanostructures, which is conducive to greatly enhancing the performance.
机译:燃料电池是将最之一有前途的替代日益稀缺化石燃料,Pt是最常用的阳极和阴极电化学催化剂反应。商业化,它是最迫切需要改善Pt的效率和降低成本。我们合成一个八面体Pt-Ni-Ir yolk-shell通过逐步共催化剂(SCD),surface-limited Pt沉积(之)Ni-coordinating蚀刻(指标)的过程。实验研究表明,催化活动和三金属yolk-shell催化剂比高出几倍对氧还原和商业Pt / C甲醇在酸性和氧化碱性条件。设计其他多金属功能材料与复杂的分层纳米结构,这有利于大大提高性能。

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