Nitrogen doped carbon nanoparticles enhanced extracellular electron transfer for high-performance microbial fuel cells anode.
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Summary
Experimental results demonstrated that the use of NDCN increased anodic absorption of flavins, facilitating shuttle-mediated extracellular electron transfer, and enabled enhanced contact-based direct electron transfer via outer-membrane c-type cytochromes.
- Type
- article
- Published
- 2015-12-01
- Cited by
- 109
- References
- 39
- OpenAlex
- https://openalex.org/W25439129
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:20661853
Keywords
Carbonate, Sedimentary rock, Crude oil, Geology, Chemistry
References
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- Microbial fuel-cells
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- General expression of the linear potential sweep voltammogram in the case of diffusionless electrochemical systems
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- Activation Enhancement of Citric Acid Cycle to Promote Bioelectrocatalytic Activity of arcA Knockout Escherichia coli Toward High-Performance Microbial Fuel Cell
- Carbon nanotube/polyaniline composite as anode material for microbial fuel cells
- Increase of riboflavin biosynthesis underlies enhancement of extracellular electron transfer of Shewanella in alkaline microbial fuel cells.
- Exoelectrogenic bacteria that power microbial fuel cells
- Electrochemical Measurement of Electron Transfer Kinetics by Shewanella oneidensis MR-1*
- Shewanella secretes flavins that mediate extracellular electron transfer
- A novel mediator-polymer-modified anode for microbial fuel cells.
- A new method for fabrication of graphene/polyaniline nanocomplex modified microbial fuel cell anodes
Cited by
- Adjustable bidirectional extracellular electron transfer between Comamonas testosteroni biofilms and electrode via distinct electron mediators
- Endogenously enhanced biosurfactant production promotes electricity generation from microbial fuel cells.
- Enhanced Shewanella biofilm promotes bioelectricity generation
- Amperometric oxygen biosensor based on hemoglobin encapsulated in nanosized grafted starch particles
- In situ nitrogen-doping of nickel nanoparticle-dispersed carbon nanofiber-based electrodes: Its positive effects on the performance of a microbial fuel cell
- Growth analysis and high-yield synthesis of aligned-stacked branched nitrogen-doped carbon nanotubes using sesame oil as a natural botanical hydrocarbon precursor
- The effect of external resistance on biofilm formation and internal resistance in Shewanella inoculated microbial fuel cells
- Amine-terminated ionic liquid functionalized carbon nanotubes for enhanced interfacial electron transfer of Shewanella putrefaciens anode in microbial fuel cells
- Surface Modification of a Graphite Fiber Fabric Anode for Enhanced Bioelectrochemical Methane Production
- In-situ growth of graphene/polyaniline for synergistic improvement of extracellular electron transfer in bioelectrochemical systems.
- A synthetic microbial consortium of Shewanella and Bacillus for enhanced generation of bioelectricity
- Enhancing extracellular electron transfer of Shewanella to improve the performance of microbial fuel cells
- Carbon Nanofiber-skinned Three Dimensional Ni/Carbon Micropillars: High Performance Electrodes of a Microbial Fuel Cell
- Three-Dimensional Electrodes for High-Performance Bioelectrochemical Systems
- Functional Graphene Nanomaterials Based Architectures: Biointeractions, Fabrications, and Emerging Biological Applications.
- Mini-review: Anode modification for improved performance of microbial fuel cell
- Nanostructured material-based biofuel cells: recent advances and future prospects.
- Facile in-situ fabrication of graphene/riboflavin electrode for microbial fuel cells
- Effect of electrode sub-micron surface feature size on current generation of Shewanella oneidensis in microbial fuel cells
- Bio-power performance enhancement in microbial fuel cell using Ni–ferrite decorated anode
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