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Facile synthesis of graphene-phthalocyanine composites as oxygen reduction electrocatalysts in microbial fuel cells

机译:石墨烯 - 酞菁复合材料的容易合成作为微生物燃料电池氧还原电催化剂

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摘要

In the path of direct energy conversion and wastewater disposal through microbial fuel cells (MFCs), the oxygen reduction reaction (ORR) plays a pivotal role. However, kinetic limitations hinders the spread of such technology requiring the use of a catalyst to develop efficient and cost effective devices. Herein we report a facile method for the preparation of iron-based catalyst supported on graphene oxide (GO) obtained by electrochemical exfoliation of graphite in aqueous solution of ammonium sulfate. Two different strategies to include nitrogen functionalities on/in GO matrix have been used, such as one-step nitrogen-doping in solution and post treatments based on annealing with ammonia gas. lion (II) phthalocyanine (FePc) was used as iron source and deposited on GO by pyrolysis-free impregnation. Tuning the adjustable parameters governing the materials preparation allowed producing GO nanosheets with unique morphology and surface properties for enhancing the interaction with FePc. By combining the use of microscopy, electrochemical and spectroscopic techniques, a correlation between structure and surface chemistry of the prepared materials with catalytic activity towards ORR was established. The applicability of iron-based materials as ORR cathodes was evaluated by assembling single chamber air cathodes MFCs, which power and voltage generation over time were acquired. The obtained results demonstrated that FePc/GO-based electrocatalysts can be used for electricity generation and waste treatment at the cathode side of MFCs.
机译:在通过微生物燃料电池(MFCs)直接能量转换和废水处理的路径中,氧还原反应(ORR)起枢转作用。然而,动力学限制阻碍了需要使用催化剂来开发有效和成本效益的装置的这种技术的扩散。在此,我们报告了一种用于制备在硫酸铵水溶液中石墨的​​电化学剥离所获得的石墨烯氧化物(GO)上负载的铁基催化剂的容易方法。已经使用了两种不同的策略,包括氮功能,例如基于用氨气退火的溶液和后处理中的一步氮气掺杂。狮子(II)酞菁(FEPC)用作铁源并通过无热解的浸渍沉积。调整控制材料准备的可调参数允许产生具有独特形态和表面性质的Go NanosheS,用于增强与FEPC的相互作用。通过组合使用显微镜,电化学和光谱技术,建立了具有催化活性的制备材料的结构和表面化学之间的相关性。通过组装单室空气阴极MFC来评估铁基材料作为ORR阴极的适用性,该电力和电压通过随时间的电力和电压产生。所获得的结果表明,FEPC / GO基电催化剂可用于MFC的阴极侧的发电和废物处理。

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