Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cell to generate electrical power. Although a range of cyanobacteria and algae have been shown to generate photocurrent in devices of a multitude of architectures, mechanistic understanding of extracellular electron transfer by phototrophs remains minimal. Here we describe a mediatorless bioelectrochemical device to measure the electrogenic output of a planktonically grown cyanobacterium, Synechocystis sp. PCC6803. Light dependent production of current is measured, and its magnitude is shown to scale with microbial cell concentration and light intensity. Bioelectrochemical characterization of a Synechocystis mutant lacking Photosystem II demonstrates co...
Photosynthetic microorganisms can export electrons outside their cells, a phenomenon called exoelect...
.Here we show that diverse genera of cyanobacteria including biofilm-forming and pelagic strains hav...
Cyanobacteria have evolved elaborate electron transport pathways to carry out photosynthesis and res...
Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cell to gen...
Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cell to gen...
<div><p>Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cel...
Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cell to gen...
Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cell to gen...
abstract: Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel c...
Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cell to gen...
Biophotovoltaic devices utilize photosynthetic organisms such as the model cyanobacterium Synechocys...
Biophotovoltaic devices utilize photosynthetic organisms such as the model cyanobacterium Synechocys...
Isolated chloroplasts (from plants and algae) and photosynthetic microorganisms, including algae and...
Biological photovoltaics (BPVs) are emerging as a potential sustainable energy-generating technology...
Cyanobacteria account for 20-30% of Earth's primary photosynthetic productivity and convert solar en...
Photosynthetic microorganisms can export electrons outside their cells, a phenomenon called exoelect...
.Here we show that diverse genera of cyanobacteria including biofilm-forming and pelagic strains hav...
Cyanobacteria have evolved elaborate electron transport pathways to carry out photosynthesis and res...
Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cell to gen...
Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cell to gen...
<div><p>Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cel...
Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cell to gen...
Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cell to gen...
abstract: Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel c...
Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cell to gen...
Biophotovoltaic devices utilize photosynthetic organisms such as the model cyanobacterium Synechocys...
Biophotovoltaic devices utilize photosynthetic organisms such as the model cyanobacterium Synechocys...
Isolated chloroplasts (from plants and algae) and photosynthetic microorganisms, including algae and...
Biological photovoltaics (BPVs) are emerging as a potential sustainable energy-generating technology...
Cyanobacteria account for 20-30% of Earth's primary photosynthetic productivity and convert solar en...
Photosynthetic microorganisms can export electrons outside their cells, a phenomenon called exoelect...
.Here we show that diverse genera of cyanobacteria including biofilm-forming and pelagic strains hav...
Cyanobacteria have evolved elaborate electron transport pathways to carry out photosynthesis and res...