Electrochemical investigation of a microbial solar cell reveals a nonphotosynthetic biocathode catalyst
about
A previously uncharacterized, nonphotosynthetic member of the Chromatiaceae is the primary CO2-fixing constituent in a self-regenerating biocathode.Marine sediments microbes capable of electrode oxidation as a surrogate for lithotrophic insoluble substrate metabolism.Metaproteomic evidence of changes in protein expression following a change in electrode potential in a robust biocathode microbiome.Localized electron transfer rates and microelectrode-based enrichment of microbial communities within a phototrophic microbial mat.Complete Genome Sequence of Labrenzia sp. Strain CP4, Isolated from a Self-Regenerating Biocathode Biofilm.Metatranscriptomics Supports the Mechanism for Biocathode Electroautotrophy by "Candidatus Tenderia electrophaga".Complete Genome Sequence of Marinobacter sp. CP1, Isolated from a Self-Regenerating Biocathode Biofilm.Multiple cathodic reaction mechanisms in seawater cathodic biofilms operating in sediment microbial fuel cells.Relative abundance of 'Candidatus Tenderia electrophaga' is linked to cathodic current in an aerobic biocathode community.High Resolution AFM and Single-Cell Resonance Raman Spectroscopy of Geobacter sulfurreducens Biofilms Early in Growth
P2860
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P2860
Electrochemical investigation of a microbial solar cell reveals a nonphotosynthetic biocathode catalyst
description
2013 nî lūn-bûn
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2013年の論文
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2013年論文
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name
Electrochemical investigation ...... osynthetic biocathode catalyst
@en
type
label
Electrochemical investigation ...... osynthetic biocathode catalyst
@en
prefLabel
Electrochemical investigation ...... osynthetic biocathode catalyst
@en
P2093
P2860
P356
P1476
Electrochemical investigation ...... osynthetic biocathode catalyst
@en
P2093
Leonard M Tender
Richard H Glaven
Zheng Wang
P2860
P304
P356
10.1128/AEM.00431-13
P407
P577
2013-04-19T00:00:00Z