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Dynamic Potential-Dependent Electron Transport Pathway Shifts in Anode Biofilms of Geobacter sulfurreducens

机译:动态电位依赖电子传输路径在地形硫化琥珀酸盐的阳极生物膜中转移

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摘要

Biofilms of the anode-respiring bacterium Geobacter sulfurreducens (G. sulfurreducens) demonstrate dynamic potential-dependent changes between two electron transport pathways that are used selectively depending on the anode potential. Electrochemical impedance spectroscopy (EIS) measurements suggest that these pathways (both n=1), with midpoint potentials of -0.155 (+/- 0.005) and -0.095 (+/- 0.003) V versus standard hydrogen electrode, are not additive within the biofilm, but are preferentially used depending on the anode potential. Potential step voltammetry and cyclic voltammetry (CV) confirmed rapid changes between the two pathways in minutes when the anode potential is changed. We confirm that the electrochemical response observed in a slow-scan-rate CV (similar to 1 mVs(-1)) is often composed of at least the two pathways characterized. Thus, beyond understanding the electron transport pathways in G. sulfurreducens, this study also has implications on the interpretation of previously collected and future potential-dependent datasets.
机译:阳极呼吸细菌的生物膜硫化磺酰(G.硫雷雷琥珀酰)展示了根据阳极电位选择性地使用的两种电子传输途径之间的动态电位依赖性变化。电化学阻抗光谱(EIS)测量表明,这些途径(n = 1),中点电位为-0.155(+/- 0.005)和-0.095(+/- 0.003)V与标准氢电极,在生物膜,但优先根据阳极电位使用。电位步长伏安法和循环伏安法(CV)在阳极电位改变时在几分钟内确认两种途径之间的快速变化。我们确认在慢扫描速率CV(类似于1mVs(-1))中观察到的电化学响应通常由表征的两个途径组成。因此,除了了解G.硫化琥珀素的电子传输途径之外,该研究还对先前收集的和未来潜在的潜在数据集的解释有影响。

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