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N-, Fe-Doped carbon sphere/oriented carbon nanofiber nanocomposite with synergistically enhanced electrochemical activities

机译:N-,Fe掺杂的碳球/定向碳纳米河纳米核化合物,具有协同增强的电化学活性

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Catalysts for the oxygen reduction reaction (ORR) are crucial in metal–air batteries, fuel cells and other electrochemical devices. Developing heteroatom-doped carbon catalysts with high performance and stability in alkaline media for practical application of metal–air batteries or in acidic media for practical application of proton exchange membrane fuel cells is still difficult and challenging. Here, we report the N-, Fe-doped carbon sphere/oriented carbon nanofiber nanocomposite (NFe-CS/CNF). N-, Fe-doped carbon spheres (NFe-CS) were derived from p -phenylenediamine and oriented N-, Fe-doped carbon nanofibers (NFe-CNF) were derived from o -phenylenediamine. 3.89 at% of N and 0.38 at% of Fe were doped in a typical product, which has high surface area. The typical product exhibits a high ORR activity and stability in acidic media and reveals superior stability and tolerance to methanol than Pt/C. In alkaline media, the typical product shows superior activity to Pt/C. The performance of a zinc–air full cell under real battery operation conditions indicates that the typical product is a competitive alternative to commercial PtC. The unique structure of NFe-CS/CNF could create strong interactions between the nanospheres and oriented nanofibers, promote charger transfer at the interface and improve the conductivity. This work provides a new fundamental understanding and design strategy for excellent carbon-based ORR catalysts.
机译:用于氧还原反应(ORR)的催化剂在金属 - 空气电池,燃料电池和其他电化学装置中是至关重要的。在碱性介质中开发具有高性能和稳定性的杂原子掺杂的碳催化剂,用于实际应用金属 - 空气电池或在酸性介质中进行实际应用质子交换膜燃料电池仍然困难和具有挑战性。在这里,我们报告了N-,Fe掺杂的碳球/定向碳纳米纤维纳米复合材料(NFE-CS / CNF)。 N-,Fe掺杂的碳球(NFE-CS)衍生自对苯二胺,取向的N-,Fe掺杂的碳纳米纤维(NFE-CNF)衍生自O-苯二胺。 3.89%的N和0.38以%的Fe%的Fe掺杂在具有高表面积的典型产品中。典型的产品在酸性介质中表现出高ORR活性和稳定性,并且透露比Pt / C的稳定性和耐受性。在碱性介质中,典型产品显示出优异的活性至pt / c。在真正的电池操作条件下,锌空气全细胞的性能表明典型产品是商业PTC的竞争替代品。 NFE-CS / CNF的独特结构可以在纳米球和定向纳米纤维之间产生强相互作用,促进界面处的充电器转移并提高导电性。这项工作为优秀的碳基ORR催化剂提供了一种新的基本理解和设计策略。

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