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Supramolecular gel-assisted synthesis of double shelled Co@CoO@N-C/C nanoparticles with synergistic electrocatalytic activity for the oxygen reduction reaction

机译:超分子gel-assisted合成双炮击Co@CoO@N-C / C纳米颗粒协同electrocatalytic活动的氧还原反应

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摘要

Investigating active, stable, and low-cost materials for the oxygen reduction reaction is one of the key challenges in fuel-cell research. In this work, we describe the formation of N-doped carbon shell coated Co@CoO nanoparticles supported on Vulcan XC-72 carbon materials (Co@CoO@N-C/C) based on a simple supramolecular gel-assisted method. The double-shelled Co@CoO@N-C/C core-shell nanoparticles exhibit superior electrocatalytic activities for the oxygen reduction reaction compared to N-doped carbon and cobalt oxides, demonstrating the synergistic effect of the hybrid nanomaterials. Notably, the Co@CoO@N-C/C nanoparticles give rise to a comparable four-electron selectivity, long-term stability, and high methanol tolerance; all show a multi-fold improvement over the commercial Pt/C catalyst. The progress is of great importance in exploring advanced non-precious metal-based electrocatalysts for fuel cell applications.
机译:调查活动,稳定,和低成本材料对氧还原反应在燃料电池研究的一个关键挑战。在这项工作中,我们描述的形成碳壳包覆的纳米Co@CoO n型支持火神xc - 72碳材料(Co@CoO@N-C / C)基于一个简单的超分子gel-assisted方法。Co@CoO@N-C / C核壳纳米粒子展览优越的electrocatalytic活动氧还原反应而n型碳和钴氧化物,展示了混合纳米材料的协同效应。值得注意的是,Co@CoO@N-C / C纳米粒子产生可比four-electron选择性,长期稳定和高甲醇宽容;所有显示全方位的改善商业Pt / C催化剂。在探索先进的重视non-precious金属electrocatalysts为燃料电池的应用。

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