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Investigation of Electron Transfer by Geobacter sulfurreducens Biofilms by using an Electrochemical Quartz Crystal Microbalance

机译:用电化学石英晶体微量天平研究土壤杆菌还原性生物膜对电子的转移

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摘要

Both the short- and long-term electron-transfer processes of electrode-respiring Geobacter sulfurreducens biofilms are demonstrated by using an electrochemical quartz crystal microbalance (QCM). The QCM monitors the frequency shift from the initial resonant frequency (background) in real time, while the current increases, because of biofilm growth. In the short term, the frequency shift is linear with respect to current for the biofilm. In long-term biofilm growth up to the exponential phase, a second linear region of frequency shift with respect to current is observed. In addition to the frequency shift response at constant polarization, the frequency shift response is coupled to cyclic voltammetry experiments. During cyclic voltammetry, a reproducible, negative increase in frequency shift is observed at oxidizing potentials. The results suggest that a QCM can be used in applications in which it is useful to find the most efficient current producer.
机译:通过使用电化学石英晶体微量天平(QCM),可以证明可呼吸电极的Geobacter减硫生物膜的短期和长期电子转移过程。由于生物膜的生长,QCM实时监控从初始共振频率(本底)开始的频率偏移,同时电流增加。在短期内,频移相对于生物膜的电流是线性的。在直到指数期的长期生物膜生长中,观察到相对于电流的频率偏移的第二线性区域。除了恒定极化时的频移响应外,频移响应还与循环伏安法实验耦合。在循环伏安法期间,在氧化电位下观察到频移的可再现负增长。结果表明,QCM可以用于寻找最有效的当前生产者的应用中。

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