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Identification of catalytic sites for oxygen reduction and oxygen evolution in N-doped graphene materials: Development of highly efficient metal-free bifunctional electrocatalyst

机译:鉴定氮掺杂石墨烯材料中用于氧还原和氧释放的催化位点:高效无金属双功能电催化剂的开发

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Oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) are critical to renewable energy conversion and storage technologies. Heteroatom-doped carbon nanomaterials have been reported to be efficient metal-free electrocatalysts for ORR in fuel cells for energy conversion, as well as ORR and OER in metal-air batteries for energy storage. We reported that metal-free three-dimensional (3D) graphene nanoribbon networks (N-GRW) doped with nitrogen exhibited superb bifunctional electrocatalytic activities for both ORR and OER, with an excellent stability in alkaline electrolytes (for example, KOH). For the first time, it was experimentally demonstrated that the electron-donating quaternary N sites were responsible for ORR, whereas the electron-withdrawing pyridinic N moieties in N-GRW served as active sites for OER. The unique 3D nanoarchitecture provided a high density of the ORR and OER active sites and facilitated the electrolyte and electron transports. As a result, the as-prepared N-GRW holds great potential as a low-cost, highly efficient air cathode in rechargeable metal-air batteries. Rechargeable zinc-air batteries with the N-GRW air electrode in a two-electrode configuration exhibited an open-circuit voltage of 1.46 V, a specific capacity of 873 mAh g?1, and a peak power density of 65 mW cm?2, which could be continuously charged and discharged with an excellent cycling stability. Our work should open up new avenues for the development of various carbon-based metal-free bifunctional electrocatalysts of practical significance.
机译:氧还原反应(ORR)和氧释放反应(OER)对于可再生能源转换和存储技术至关重要。据报道,杂原子掺杂的碳纳米材料是用于燃料电池中用于能量转换的ORR以及用于能量存储的金属空气电池中的ORR和OER的高效无金属电催化剂。我们报告说,掺杂氮的无金属三维(3D)石墨烯纳米带网络(N-GRW)对ORR和OER均表现出极好的双功能电催化活性,在碱性电解质(例如KOH)中具有出色的稳定性。首次通过实验证明给电子的季氮位点负责ORR,而N-GRW中的吸电子吡啶基N部分充当OER的活性位点。独特的3D纳米结构提供了高密度的ORR和OER活性位,并促进了电解质和电子的传输。结果,作为可充电金属空气电池中的低成本,高效率的空气阴极,制备的N-GRW具有巨大的潜力。 N-GRW空气电极为两电极配置的可充电锌空气电池,其开路电压为1.46 V,比容量为873 mAh g 1 ,并且峰值功率密度65 mW cm ?2 可以连续充电和放电,具有出色的循环稳定性。我们的工作应为开发各种具有实际意义的无碳基无金属双功能电催化剂开辟新途径。

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