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首页> 外文期刊>Bulletin of Japan Society of Coordination Chemistry >Electrochemistry of Living Current Generating Bacterium Shewanella -Extracellular Electron Transfer via Outer-membrane Cytochrome c-
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Electrochemistry of Living Current Generating Bacterium Shewanella -Extracellular Electron Transfer via Outer-membrane Cytochrome c-

机译:活菌产生希沃氏菌的电化学-通过外膜细胞色素c-转移细胞外电子

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Genus Shewanella is a gram-negative microorganism which has a unique property of utilizing solid state metal-oxide as a terminal electron acceptor. The extracellular electron transfer (ET) occurs via cytochromes located in the outer membrane (outer membrane-cytochrome, OMC). Due to the unique property, Shewanella has attracted a lot of attentions from the view point of biogeochemical cycle and microbial fuel cell. In this review, our recent results on the extracellular ET will be introduced with Shewanella loihica PV-4. We used various electrochemical techniques as well as spectroscopic ones to investigate the ET between the microbes and the (solid) electrode. Based on the various experimental results, we show evidences of the existence of direct ET path from OMC to electrode. We also show that the addition of water soluble Mn Porphyrines, semiconducting iron oxide nano colloids, etc., greatly enhances the ET efficiency. The extracellular ET process can be applied to microbial fuel cell. The power output of thin fuel cell, so far we achieved, is ca. 2 W/l, which is almost equal to one of the most efficient bio-fuel cells using isolated protein catalysts.
机译:希瓦氏菌属是革兰氏阴性微生物,具有利用固态金属氧化物作为末端电子受体的独特性能。细胞外电子转移(ET)通过位于外膜的细胞色素发生(外膜细胞色素,OMC)。由于其独特的性质,从生物地球化学循环和微生物燃料电池的角度来看,希瓦氏菌引起了很多关注。在这篇评论中,我们将在Shewanella loihica PV-4上介绍我们关于细胞外ET的最新结果。我们使用了各种电化学技术和光谱技术来研究微生物与(固体)电极之间的ET。基于各种实验结果,我们显示了从OMC到电极的直接ET路径的存在的证据。我们还表明,添加水溶性锰卟啉,半导体氧化铁纳米胶体等,可大大提高ET效率。细胞外ET工艺可以应用于微生物燃料电池。到目前为止,我们实现的薄型燃料电池的功率输出约为。 2 W / l,几乎等于使用​​分离的蛋白质催化剂的最高效生物燃料电池之一。

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