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Understanding Biophotocurrent Generation in Photosynthetic Purple Bacteria

机译:了解光合紫色细菌中的生物电流生成

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Establishing an efficient extracellular electron transfer (EET) process between photoelectroactive micro-organisms and an electrode surface is critical for the development of photobioelectrocatalysis. Soluble and immobilized redox mediators have been applied with the purple bacterium Rhodobacter capsulatus for this purpose. However, detailed information on its EET with an electrode surface is not available and, therefore, choice of mediators has been by trial and error. Herein, we experimentally evaluated the capability of different soluble, quinone-based redox mediators to support EET and compared the experimental data with a computational model based on density functional theory calculations. We show that computed electrochemical redox properties of redox mediators in a lipophilic environment correlate to EET processes of Rhodobacter capsulatus, suggesting that intermembrane mediator characteristics are more diagnostic than redox properties of the mediators in an aqueous solution, and that the limiting electron transfer step takes place in the lipophilic membrane of the bacterial cells. This knowledge provides critical insight into designing future mediated bioelectrocatalysis systems.
机译:在光电子活性微生物和电极表面之间建立有效的细胞外电子转移(EET)工艺对于光学电离分析的发育至关重要。溶于和固定化的氧化还原介质已用紫色细菌乳菌胶囊液施用。但是,没有电极表面的EET的详细信息不可用,因此,调解器的选择是通过试验和误差的选择。在此,我们通过基于密度泛函理论计算将不同可溶性的基于醌类氧化还原介质的能力评估了不同可溶性的基于醌的氧化还原介质的能力,并将实验数据与计算模型进行了比较。我们表明,在亲脂环境中的氧化还原介质的电化学氧化还原性能与乳菌囊液的EET过程相关,表明膜介质特性比水溶液中介质的氧化剂特性更诊断,并且限制电子转移步骤发生在细菌细胞的亲脂膜中。该知识提供了对设计未来介导的生物电池分析系统的关键洞察力。

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