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High performance platinum single atom electrocatalyst for oxygen reduction reaction

机译:用于氧还原反应的高性能铂单原子电催化剂

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For the large-scale sustainable implementation of polymer electrolyte membrane fuel cells in vehicles, high-performance electrocatalysts with low platinum consumption are desirable for use as cathode material during the oxygen reduction reaction in fuel cells. Here we report a carbon black-supported cost-effective, efficient and durable platinum single-atom electrocatalyst with carbon monoxide/methanol tolerance for the cathodic oxygen reduction reaction. The acidic single-cell with such a catalyst as cathode delivers high performance, with power density up to 680?mW?cm?2 at 80?°C with a low platinum loading of 0.09?mgPt cm?2, corresponding to a platinum utilization of 0.13?gPt kW?1 in the fuel cell. Good fuel cell durability is also observed. Theoretical calculations reveal that the main effective sites on such platinum single-atom electrocatalysts are single-pyridinic-nitrogen-atom-anchored single-platinum-atom centres, which are tolerant to carbon monoxide/methanol, but highly active for the oxygen reduction reaction.
机译:为了在车辆中大规模可持续地使用聚合物电解质膜燃料电池,需要低铂消耗的高性能电催化剂作为燃料电池中氧还原反应期间的阴极材料。在这里,我们报告了炭黑支持的具有成本效益,高效且耐用的铂单原子电催化剂,对一氧化碳/甲醇具有耐受性,可用于阴极氧还原反应。以阴极为催化剂的酸性单电池可提供高性能,在80°C时功率密度高达680?mW?cm ?2 ,铂含量低至0.09?mg Pt cm ?2 ,对应于燃料电池中铂的利用率为0.13?g Pt kW ?1 。还观察到良好的燃料电池耐久性。理论计算表明,此类铂单原子电催化剂的主要有效位点是单吡啶氮原子固定的单铂原子中心,它们对一氧化碳/甲醇具有耐受性,但对氧还原反应具有很高的活性。

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