Genetically Engineered Microbial Fuel Cells
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- Type
- article
- Published
- 2010-04-01
- Cited by
- 54
- References
- 59
- OpenAlex
- https://openalex.org/W1979253555
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:94388455
Keywords
Microbial fuel cell, Electron transfer, Genetically engineered, Biochemical engineering, Nanotechnology
References
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- Bug juice: harvesting electricity with microorganisms
- Disposable Carbon Nanotube Modified Screen‐Printed Biosensor for Amperometric Detection of Organophosphorus Pesticides and Nerve Agents
- Yeast surface display for screening combinatorial polypeptide libraries
- A state of the art review on microbial fuel cells: A promising technology for wastewater treatment and bioenergy.
- Surface display of redox enzymes in microbial fuel cells.
- Site-specific insertion of 3-aminotyrosine into subunit alpha2 of E. coli ribonucleotide reductase: direct evidence for involvement of Y730 and Y731 in radical propagation.
- Electricity production from cellulose in a microbial fuel cell using a defined binary culture.
- Long-range electrical contacting of redox enzymes by SWCNT connectors.
- Microbial deposition of gold nanoparticles by the metal-reducing bacterium Shewanella algae
- Toward the Synthesis of a Photosynthetic Reaction Center Maquette: A Cofacial Porphyrin Pair Assembled between Two Subunits of a Synthetic Four-Helix Bundle Multiheme Protein
- Charged and hydrophobic groups are localised in the short and long tuft fibrils on Streptococcus sanguis strains
- Isolating and engineering human antibodies using yeast surface display
- Morphology of gold nanoparticles synthesized by filamentous cyanobacteria from gold(I)-thiosulfate and gold(III)--chloride complexes.
Cited by
- Metabolic engineering for increased electrogenic activity and bioenergy production
- From functional metagenomics to unique synthetic expression strategies in iron-reducing bacteria.
- DREAM Assay for Studying Microbial Electron Transfer
- Improving the Performance of Microbial Fuel Cells through Anode Manipulation.
- Enhancement of bioelectricity generation by cofactor manipulation in microbial fuel cell.
- Increasing intracellular releasable electrons dramatically enhances bioelectricity output in microbial fuel cells
- Enhancement of extracellular electron transfer and bioelectricity output by synthetic porin
- Eco-Affectionate Face of Microbial Fuel Cells
- Microbial fuel cells – Applications for generation of electrical power and beyond
- A paper-based microbial fuel cell array for rapid and high-throughput screening of electricity-producing bacteria.
- Enzymatic versus microbial bio-catalyzed electrodes in bio-electrochemical systems.
- Increase of riboflavin biosynthesis underlies enhancement of extracellular electron transfer of Shewanella in alkaline microbial fuel cells.
- Overexpression of atpI Encoding ATP Synthase Enhances the Electricity Production in Microbial Fuel Cells
- Effect of Temperature on the Catalytic Ability of Electrochemically Active Biofilm as Anode Catalyst in Microbial Fuel Cells
- Cathodic catalysts in bioelectrochemical systems for energy recovery from wastewater.
- Towards energy neutral wastewater treatment: methodology and state of the art.
- Bioelectricity enhancement via overexpression of quorum sensing system in Pseudomonas aeruginosa-inoculated microbial fuel cells.
- Bioelectrochemical systems for efficient recalcitrant wastes treatment
- Towards sustainable wastewater treatment by using microbial fuel cells-centered technologies
- NADH gene manipulation for advancing bioelectricity in Clostridium ljungdahlii microbial fuel cells
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