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Covalent functionalization based heteroatom doped graphene nanosheet as a metal-free electrocatalyst for oxygen reduction reaction

机译:基于共价官能化的杂原子掺杂石墨烯纳米片作为氧还原反应的无金属电催化剂

摘要

Oxygen reduction reaction (ORR) is an important reaction in energy conversion systems such as fuel cells and metal-air batteries. Carbon nanomaterials doped with heteroatoms are highly attractive materials for use as electrocatalysts by virtue of their excellent electrocatalytic activity, high conductivity, and large surface area. This study reports the synthesis of highly efficient electrocatalysts based on heteroatom-doped graphene nanosheets prepared through covalent functionalization using various small organic molecules and a subsequent thermal treatment. A series of nitrogen-doped reduced graphene oxide (NRGOn) nanosheets exhibited varying degrees and configurations of nitrogen atoms within the graphitic framework depending on the type of precursors used. On the basis of the rotating disk electrode (RDE) and rotating ring-disk electrode (RRDE) experiments, NRGO3, with a high degree of pyridinic-N content, displayed the desired one-step, quasi-four-electron transfer pathway during ORR, similar to commercial Pt/C. We also demonstrated the potential of covalent functionalization of sulfur and boron-doped graphene nanosheets.
机译:氧还原反应(ORR)是能量转换系统中的重要反应,例如燃料电池和金属空气电池。掺杂有杂原子的碳纳米材料由于其优异的电催化活性,高电导率和大的表面积而成为用作电催化剂的极具吸引力的材料。这项研究报告了基于杂原子掺杂的石墨烯纳米片的高效电催化剂的合成,该纳米片是通过使用各种有机小分子的共价官能化和随后的热处理制备的。一系列氮掺杂的还原氧化石墨烯(NRGOn)纳米片根据所使用的前驱体的类型在石墨骨架内表现出不同程度的氮原子构型。根据旋转圆盘电极(RDE)和旋转环形圆盘电极(RRDE)的实验,高吡啶二氮含量的NRGO3在ORR期间显示出所需的一步一步准四电子转移途径,类似于商业Pt / C。我们还证明了硫和硼掺杂石墨烯纳米片共价官能化的潜力。

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