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首页> 外文期刊>International journal of hydrogen energy >Nitrogen doped graphene sheets as metal free anode catalysts for the high performance microbial fuel cells
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Nitrogen doped graphene sheets as metal free anode catalysts for the high performance microbial fuel cells

机译:氮掺杂石墨烯片作为高性能微生物燃料电池的无金属阳极催化剂

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摘要

The doping of nitrogen over the graphene sheets was achieved by plasma enhanced chemical vapor deposition (CVD) technique and the resultant N doped graphene nanosheets (NGNS) were exploited as metal free biocompatible anode catalysts in microbial fuel cells (MFC). The wrinkled, open-porous, and cross linked network structure was observed for the NGNS as evidenced from the electron microscopic images. The doping of nitrogen on crumpled graphene layers induced the structural disorders and number of defects, which facilitated the electrical conductivity and catalytic activity of prepared NGNS and the N-doping over GNS was confirmed from XPS, FT-IR, UV-Vis and XRD techniques. The electrocatalytic activity of prepared nanostructures toward glucose oxidation based on Escherichia coil was evaluated by using cyclic voltammetry, revealing that NGNS exhibited the maximum electrooxidation current. The effective doping of nitrogen on graphene layers offered the maximum MFC power density of 1008 mW/m(2) at a current density of 6300 mA/m(2) and the hydrophobic properties of said catalyst enhanced the durability of MFCs. The exploitation of metal free NGNS as MFC anode catalysts geared up the new possibilities for the exploration of said catalysts in number of energy based applications. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过等离子增强化学气相沉积(CVD)技术实现了石墨烯片上氮的掺杂,并将所得的N掺杂石墨烯纳米片(NGNS)用作微生物燃料电池(MFC)中的无金属生物相容性阳极催化剂。从电子显微镜图像可以看出,NGNS观察到皱纹,开孔和交联的网络结构。皱纹石墨烯层上的氮掺杂引起结构紊乱和缺陷数量,这有助于制备的NGNS的电导率和催化活性,并且通过XPS,FT-IR,UV-Vis和XRD技术证实了NNS在GNS上的掺杂。通过循环伏安法评估了基于纳米线圈制备的纳米结构对葡萄糖氧化的电催化活性,发现NGNS表现出最大的电氧化电流。氮在石墨烯层上的有效掺杂在6300 mA / m(2)的电流密度下提供了1008 mW / m(2)的最大MFC功率密度,所述催化剂的疏水性提高了MFC的耐久性。不含金属的NGNS作为MFC阳极催化剂的开发为在许多基于能源的应用中探索所述催化剂提供了新的可能性。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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