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Experimental and Theoretical Demonstrations for the Mechanism behind Enhanced Microbial Electron Transfer by CNT Network

机译:CNT网络增强微生物电子转移的机理的实验和理论证明

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摘要

Bioelectrochemical systems (BESs) share the principle of the microbially catalyzed anodic substrate oxidation. Creating an electrode interface to promote extracellular electron transfer from microbes to electrode and understanding such mechanisms are crucial for engineering BESs. In this study, significantly promoted electron transfer and a 10-times increase in current generation in a BES were achieved by the utilization of carbon nanotube (CNT) network, compared with carbon paper. The mechanisms for the enhanced current generation with the CNT network were elucidated with both experimental approach and molecular dynamic simulations. The fabricated CNT network was found to be able to substantially enhance the interaction between the c-type cytochromes and solid electron acceptor, indicating that the direct electron transfer from outer-membrane decaheme c-type cytochromes to electrode might occur. The results obtained in this study will benefit for the optimized design of new materials to target the outer membrane proteins for enhanced electron exchanges.
机译:生物电化学系统(BESs)具有微生物催化的阳极底物氧化的原理。创建电极界面以促进细胞外电子从微生物向电极的转移,并了解这种机制对工程BES至关重要。在这项研究中,与碳纸相比,利用碳纳米管(CNT)网络可显着促进BES中的电子转移,并使电流产生增加10倍。通过实验方法和分子动力学模拟阐明了利用CNT网络增强电流产生的机理。发现所制造的CNT网络能够显着增强c型细胞色素和固体电子受体之间的相互作用,表明可能发生从外膜十面体c型细胞色素到电极的直接电子转移。这项研究中获得的结果将有助于优化新材料的设计,使其靶向外膜蛋白以增强电子交换。

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