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首页> 外文期刊>Angewandte Chemie >Highly Active Bidirectional Electron Transfer by a Self-Assembled Electroactive Reduced-Graphene-Oxide-Hybridized Biofilm
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Highly Active Bidirectional Electron Transfer by a Self-Assembled Electroactive Reduced-Graphene-Oxide-Hybridized Biofilm

机译:自组装电活性还原石墨烯-氧化物-杂交生物膜的高活性双向电子转移

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摘要

Low extracellular electron transfer performance is often a bottleneck in developing high-performance bioelec-trochemical systems. Herein, we show that the self-assembly of graphene oxide and Shewanella oneidensis MR-1 formed an electroactive, reduced-graphene-oxide-hybridized, three-dimensional macroporous biofilm, which enabled highly efficient bidirectional electron transfers between Shewanella and electrodes owing to high biomass incorporation and enhanced direct contact-based extracellular electron transfer. This 3D electroactive biofilm delivered a 25-fold increase in the outward current (oxidation current, electron flux from bacteria to electrodes) and 74-fold increase in the inward current (reduction current, electron flux from electrodes to bacteria) over that of the naturally occurring biofilms.
机译:低的细胞外电子转移性能通常是开发高性能生物电子化学系统的瓶颈。在这里,我们表明氧化石墨烯和Shewanella oneidensis MR-1的自组装形成了一种电活性,还原性氧化石墨烯-杂化的三维大孔生物膜,由于高的电子密度,它能够在Shewanella和电极之间进行高效的双向电子转移。生物质结合和增强的基于直接接触的细胞外电子转移。这种3D电活性生物膜的向外电流(氧化电流,从细菌到电极的电子通量)增加了25倍,而向内电流(还原电流,从电极到细菌的电子通量)的内向电流增加了74倍。发生生物膜。

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