Factors governing the photoelectrochemical output of photosynthetic microorganisms are poorly understood, and energy loss may occur due to inefficient electron transfer (ET) processes. Here, we systematically compare the photoelectrochemistry of photosystem II (PSII) protein-films to cyanobacteria biofilms to derive: (i) the losses in light-to-charge conversion efficiencies, (ii) gains in photocatalytic longevity, and (iii) insights into the ET mechanism at the biofilm interface. This study was enabled by the use of hierarchically structured electrodes, which could be tailored for high/stable loadings of PSII core complexes and Synechocystis sp. PCC 6803 cells. The mediated photocurrent densities generated by the biofilm were 2 orders of ma...
.Here we show that diverse genera of cyanobacteria including biofilm-forming and pelagic strains hav...
Photosynthetic reaction centers catalyze the majority of solar energy conversion on the Earth. Under...
Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cell to gen...
Factors governing the photoelectrochemical output of photosynthetic microorganisms are poorly unders...
Factors governing the photoelectrochemical output of photosynthetic microorganisms are poorly unders...
Oxygenic photosynthesis is the primary solar energy-conversion process that supports much of life on...
The integration of the water-oxidation enzyme photosystem II (PSII) into electrodes allows the elect...
Photosynthetic microorganisms can export electrons outside their cells, a phenomenon called exoelect...
A film of ~40 layers of partially oriented photosystem I (PSI) complexes isolated from the red alga ...
Photosynthetic microorganisms can export electrons outside their cells, a phenomenon called exoelect...
The high quantum efficiency of photosynthetic reaction centers (RCs) makes them attractive for bioel...
Cyanobacteria account for 20-30% of Earth's primary photosynthetic productivity and convert solar en...
The key reaction of oxygenic photosynthesis, the light-driven oxidation of water, is carried out by ...
Isolated chloroplasts (from plants and algae) and photosynthetic microorganisms, including algae and...
<div><p>Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cel...
.Here we show that diverse genera of cyanobacteria including biofilm-forming and pelagic strains hav...
Photosynthetic reaction centers catalyze the majority of solar energy conversion on the Earth. Under...
Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cell to gen...
Factors governing the photoelectrochemical output of photosynthetic microorganisms are poorly unders...
Factors governing the photoelectrochemical output of photosynthetic microorganisms are poorly unders...
Oxygenic photosynthesis is the primary solar energy-conversion process that supports much of life on...
The integration of the water-oxidation enzyme photosystem II (PSII) into electrodes allows the elect...
Photosynthetic microorganisms can export electrons outside their cells, a phenomenon called exoelect...
A film of ~40 layers of partially oriented photosystem I (PSI) complexes isolated from the red alga ...
Photosynthetic microorganisms can export electrons outside their cells, a phenomenon called exoelect...
The high quantum efficiency of photosynthetic reaction centers (RCs) makes them attractive for bioel...
Cyanobacteria account for 20-30% of Earth's primary photosynthetic productivity and convert solar en...
The key reaction of oxygenic photosynthesis, the light-driven oxidation of water, is carried out by ...
Isolated chloroplasts (from plants and algae) and photosynthetic microorganisms, including algae and...
<div><p>Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cel...
.Here we show that diverse genera of cyanobacteria including biofilm-forming and pelagic strains hav...
Photosynthetic reaction centers catalyze the majority of solar energy conversion on the Earth. Under...
Biophotovoltaic devices employ photosynthetic organisms at the anode of a microbial fuel cell to gen...