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Applications of Graphene-Modified Electrodes in Microbial Fuel Cells

机译:石墨烯修饰电极在微生物燃料电池中的应用

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摘要

Graphene-modified materials have captured increasing attention for energy applications due to their superior physical and chemical properties, which can significantly enhance the electricity generation performance of microbial fuel cells (MFC). In this review, several typical synthesis methods of graphene-modified electrodes, such as graphite oxide reduction methods, self-assembly methods, and chemical vapor deposition, are summarized. According to the different functions of the graphene-modified materials in the MFC anode and cathode chambers, a series of design concepts for MFC electrodes are assembled, e.g., enhancing the biocompatibility and improving the extracellular electron transfer efficiency for anode electrodes and increasing the active sites and strengthening the reduction pathway for cathode electrodes. In spite of the challenges of MFC electrodes, graphene-modified electrodes are promising for MFC development to address the reduction in efficiency brought about by organic waste by converting it into electrical energy.
机译:石墨烯改性的材料因其优异的物理和化学特性而在能源应用方面引起了越来越多的关注,这可以显着提高微生物燃料电池(MFC)的发电性能。在这篇综述中,总结了几种典型的石墨烯修饰电极的合成方法,例如氧化石墨还原方法,自组装方法和化学气相沉积。根据MFC阳极室和阴极室中石墨烯改性材料的不同功能,组装了一系列MFC电极设计概念,例如,增强了生物相容性并提高了阳极电极的细胞外电子转移效率并增加了活性位点加强阴极还原途径。尽管存在MFC电极的挑战,但石墨烯修饰的电极仍有望用于MFC开发,以解决将有机废物转化为电能带来的效率降低问题。

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