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(00609)Nitrogen co-doped with fluorine on reduced graphene oxide for enhanced electrocatalytic activity and stability for ORR in alkaline fuel cells

机译:(00609)在氧化石墨烯氧化物上掺杂氟的氮气,用于增强碱性燃料电池中的电催化活性和锻造的稳定性

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Nitrogen co-doped with fluorine on reduced graphene oxide (N-F-rGO)was prepared by one-pot hydrothermal treatment method. The scanning electron microscopy (SEM)images and X-ray photoelectron microscopy (XPS)spectra revealed the successful doping of nitrogen and fluorine into the rGO. The Brunauer-Emmett-Teller (BET)results demonstrated high surface area of N-F-rGO that are favorable for O2 adsorption. The results show that N-F-rGO catalyst has improved the catalytic performance electrode for the ORR in alkaline environment than the fluorine undoped N-rGO. The Koutechy-Levich (KL)analysis and rotating ring disk electrode (RRDE)measurements suggest that N-F-rGO dominantly favors a 4e- reduction process. The nitrogen co-doped with fluorine on rGO exhibited remarkable long-term stability towards the ORR than Pt/C. These improved electrochemical properties indicate that N-F-rGO will be promising candidates for cost-effective electrode materials for application of non-polluting alternative energy sources.
机译:通过单罐水热处理方法制备含有氟的氮气在还原的氧化石墨烯(N-F-F-F-F-F-F-F-F-F-F-F-F-F-F-F-F-F-F-F-F-F-F-F-F-F-F-F-F-F)中。扫描电子显微镜(SEM)图像和X射线光电子显微镜(XPS)光谱显示成功掺杂氮和氟进入RGO。 Brunauer-Emmett-Teller(BET)结果显示了N-F-RGO的高表面积,有利于O2吸附。结果表明,N-F-RGO催化剂在碱性环境中改善了碱性环境的催化性能电极,而不是未掺杂的N-RGO。 KouteChy-Levich(KL)分析和旋转环形盘电极(RRDE)测量表明,N-F-Rgo主导地利用4E减少过程。在RGO上掺杂有氟的氮掺杂氟朝向ORR的显着长期稳定性而不是Pt / c。这些改进的电化学性质表明,N-F-RGO将是用于应用非污染替代能源的经济高效电极材料的候选者。

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