Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 30 checked references that resolve
resolves10.1128/AEM.01087-07Current Production and Metal Oxide Reduction by
<i>Shewanella oneidensis</i>
MR-1 Wild Type and Mutants
resolves10.1128/AEM.71.8.4414-4426.2005<i>Shewanella oneidensis</i>
MR-1 Uses Overlapping Pathways for Iron Reduction at a Distance and by Direct Contact under Conditions Relevant for Biofilms
resolves10.1073/pnas.0604517103Electrically conductive bacterial nanowires produced by
<i>Shewanella oneidensis</i>
strain MR-1 and other microorganisms
resolves10.1128/AEM.01444-06Biofilm and Nanowire Production Leads to Increased Current in
<i>Geobacter sulfurreducens</i>
Fuel Cells
resolves10.1002/bit.21671Electrochemical characterization of <i>Geobacter sulfurreducens</i> cells immobilized on graphite paper electrodes
resolves10.1128/AEM.01639-08Comparison of Electrode Reduction Activities of
<i>Geobacter sulfurreducens</i>
and an Enriched Consortium in an Air-Cathode Microbial Fuel Cell
resolves10.1021/es800970wKinetic Experiments for Evaluating the Nernst−Monod Model for Anode-Respiring Bacteria (ARB) in a Biofilm Anode
resolves10.1002/bit.21760Effect of electric currents on bacterial detachment and inactivation
resolves10.1002/bit.10600Changes in the electrochemical interface as a result of the growth of <i>Pseudomonas fluorescens</i> biofilms on gold
resolves10.1039/B816445BNovel strategy for three-dimensional real-time imaging of microbial fuel cell communities: monitoring the inhibitory effects of proton accumulation within the anode biofilm
resolves10.1016/j.bios.2006.07.027A biofilm enhanced miniature microbial fuel cell using Shewanella oneidensis DSP10 and oxygen reduction cathodes
resolves10.1021/es052254wHigh Power Density from a Miniature Microbial Fuel Cell Using <i>Shewanella oneidensis</i> DSP10
resolves10.1038/ismej.2007.107Correlated biofilm imaging, transport and metabolism measurements via combined nuclear magnetic resonance and confocal microscopy
resolves10.2166/wst.2005.0174NMR methods for in-situ biofilm metabolism studies: spatial and temporal resolved measurements
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