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Confining Iron Carbide Nanocrystals inside CNx@CNT toward an Efficient Electrocatalyst for Oxygen Reduction Reaction

机译:将碳化铁纳米晶体限制在CNx @ CNT内,使其成为高效的氧还原反应电催化剂

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摘要

The development of low-cost electrocatalysts with comparable activity for oxygen reduction reaction (ORR) to substitute platinum-based catalysts is imperative but still challenging for the commercialization of fuel cells. Herein, we reported a strategy to effectively confine. iron carbide nanocrystals in N-doped carbon coated on carbon nanotubes (CNx@CNT), which prevented the agglomeration of iron carbide during pyrolysis and thus provided the :sufficient highly active catalytic sites. Together with the benefit from three-dimensional conductive network of CNT-based core shell structure for fast electron transfer and rapid mass transfer, the developed nanocatalyst exhibited the significantly enhanced electrocatalytic activity for ORR, at welt as high durability and methanol tolerance. Moreover, it Was interestingly-found that the types of the confined iron compounds appreciably affected the performance of the catalysts, and Fe3C might be most effective on improving ORR. activity in this case.
机译:必须开发出具有与氧还原反应(ORR)相当的活性以取代铂基催化剂的低成本电催化剂,但对于燃料电池的商业化仍具有挑战性。在此,我们报告了一种有效限制策略。碳纳米管(CNx @ CNT)上的N掺杂碳中的碳化铁纳米晶体,阻止了热解过程中碳化铁的团聚,因此提供了足够的高活性催化位点。结合基于碳纳米管的核壳结构的三维导电网络快速电子转移和快速质量转移的优势,开发出的纳米催化剂对ORR表现出明显增强的电催化活性,并具有很高的耐久性和甲醇耐受性。此外,有趣的是,发现受限铁化合物的类型明显地影响了催化剂的性能,并且Fe 3 C对于改善ORR可能是最有效的。在这种情况下的活动。

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