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Nitrogen-Doped Graphene Nanoribbons as Efficient Metal-Free Electrocatalysts for Oxygen Reduction

机译:氮掺杂石墨烯纳米带作为高效的无金属氧还原催化剂

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摘要

Nitrogen-doped graphene nanoribbon (N-GNR) nanomaterials with different nitrogen contents have been facilely prepared via high temperature pyrolysis of graphene nanoribbons (GNR)/polyaniline (PANI) composites. Here, the GNRs with excellent surface integration were prepared by longitudinally unzipping the multiwalled carbon nanotubes. With a high length-to-width ratio, the GNR sheets are prone to form a conductive network by connecting end-to-end to facilitate the transfer of electrons. Different amounts of PANI acting as a N source were deposited on the surface of GNRs via a layer-by-layer approach, resulting in the formation of N-GNR nanomaterials with different N contents after being pyrolyzed. Electrochemical characterizations reveal that the obtained N_(8.3)-GNR nanomaterial has excellent catalytic activity toward an oxygen reduction reaction (ORR) in an alkaline electrolyte, including large kinetic-limiting current density and long-term stability as well as a desirable four-electron pathway for the formation of water. These superior properties make the N-GNR nanomaterials a promising kind of cathode catalyst for alkaline fuel cell applications.
机译:通过对石墨烯纳米带(GNR)/聚苯胺(PANI)复合材料进行高温热解,可以方便地制备出氮含量不同的掺氮石墨烯纳米带(N-GNR)纳米材料。在这里,通过纵向拉开多壁碳纳米管,制备了具有出色表面整合性的GNR。由于高长宽比,GNR片材易于通过端对端连接来形成导电网络,以促进电子的传输。通过逐层方法将不同数量的PANI用作N源沉积在GNR的表面上,从而导致在热解后形成具有不同N含量的N-GNR纳米材料。电化学表征表明,所获得的N_(8.3)-GNR纳米材料对碱性电解质中的氧还原反应(ORR)具有优异的催化活性,包括大的动力学极限电流密度和长期稳定性以及理想的四电子水形成的途径。这些优异的性能使N-GNR纳米材料成为用于碱性燃料电池应用的有前途的阴极催化剂。

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