The ins and outs of microorganism–electrode electron transfer reactions

Electron transfer between microorganisms and an electrode — even across long distances — enables the former to live by coupling to an electronic circuit. Such a system integrates biological metabolism with artificial electronics; studying these systems adds to our knowledge of charge transport in th...

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Published inNature reviews. Chemistry Vol. 1; no. 3
Main Authors Kumar, Amit, Hsu, Leo Huan-Hsuan, Kavanagh, Paul, Barrière, Frédéric, Lens, Piet N. L., Lapinsonnière, Laure, Lienhard V, John H., Schröder, Uwe, Jiang, Xiaocheng, Leech, Dónal
Format Journal Article
LanguageEnglish
Published London Nature Publishing Group UK 08.03.2017
Nature Publishing Group
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Summary:Electron transfer between microorganisms and an electrode — even across long distances — enables the former to live by coupling to an electronic circuit. Such a system integrates biological metabolism with artificial electronics; studying these systems adds to our knowledge of charge transport in the chemical species involved, as well as, perhaps most importantly, to our knowledge of charge transport and chemistry at the cell–electrode interfaces. This understanding may lead to microbial electrochemical systems finding widespread application, particularly in the energy sector. Bioelectrochemical systems have already shown promise for electricity generation, as well as for the production of biochemical and chemical feedstocks, and with improvement are likely to give rise to viable applications. Electrodes colonized by microbial electrocatalysts can serve as useful components in the electrosynthesis of valuable chemical products. This Review outlines the mechanisms by which electrons are transferred between microorganisms and electrodes, and describes the challenges involved in designing robust and efficient systems.
ISSN:2397-3358
2397-3358
DOI:10.1038/s41570-017-0024