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The excellent performance of nitrogen-doped porous carbon nanowires modified activated carbon as air cathode catalyst for microbial fuel cells

机译:氮掺杂多孔碳纳米线改性活性炭作为微生物燃料电池的空气阴极催化剂的优异性能

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Nitrogen-doped porous carbon nanowires with polypyrrole as precursor are synthesized by modified oxidation template assembly method. The nitrogen-doped porous carbon nanowires air cathode microbial fuel cells present a maximum power density of 1641.7 +/- 0.7 mW m(-2), a significant exchange current density of 19.97 x 10(-4) A cm(-2) and an outstanding open circuit voltage of 0.303 V, which are all higher than the control. Nitrogen-doped porous carbon nanowires modified activated carbon catalyzes oxygen reduction reaction via a four-electron reaction with an electron transfer number of 3.89, which can be comparable with Pt-based catalyst. It is testified that the nitrogen-doped porous carbon nanowires are featured with the structure and morphology of surface porous amorphous nanocarbon structure doped with large content of nitrogen. The incorporation of nitrogen, intertwined hollow nanowires, and the porous three-dimensional network configuration make an outstanding contribution to the oxygen reduction reaction. Nitrogen-doped porous carbon nanowires are expected to be a new catalyst to improve the performance of the microbial fuel cells.
机译:通过改性氧化模板组装方法合成具有聚吡咯作为前体的氮掺杂多孔碳纳米线。氮掺杂多孔碳纳米线空气阴极微生物燃料电池呈现最大功率密度为1641.7 +/- 0.7mW m(-2),其显着的交换电流密度为19.97×10(-4)厘米(-2)出色的开路电压为0.303 V,全部高于控制。氮掺杂多孔碳纳米线改性活性炭通过具有3.89的电子转移数的四电子反应催化氧还原反应,其可以与Pt基催化剂相当。据证明氮气掺杂的多孔碳纳米线具有掺杂大含量的氮的表面多孔无定形纳米碳结构的结构和形貌。氮气,交织的中空纳米线和多孔三维网络配置的掺入对氧还原反应产生了出色的贡献。预期氮掺杂多孔碳纳米线是改善微生物燃料电池性能的新催化剂。

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