Strong excitonic interactions are a key design strategy in photosynthetic light harvesting, expanding the spectral cross-section for light absorption and creating considerably faster and more robust excitation energy transfer. These molecular excitons are a direct result of exceptionally densely packed pigments in photosynthetic proteins. The main light-harvesting complexes of diatoms, known as fucoxan-thin-chlorophyll proteins (FCPs), are an exception, displaying surprisingly weak excitonic coupling between their chlorophyll (Chl) a's, despite a high pigment density. Here, we show, using single-molecule spectroscopy, that the FCP complexes of Cyclotella meneghiniana switch frequently into stable, strongly emissive states shifted 4-10 nm to...
In photosynthesis, light energy is captured by pigments bound to light-harvesting antenna proteins (...
Diatoms are characterized by very efficient photoprotective mechanisms where the excess energy is di...
AbstractIn algae, light-harvesting complexes contain specific chlorophylls (Chls) and keto-carotenoi...
Strong excitonic interactions are a key design strategy in photosynthetic light harvesting, expandin...
We characterized the energy transfer pathways in the fucoxanthin–chlorophyll protein (FCP) complex o...
spectroscopy We characterized the energy transfer pathways in the fucoxanthin–chlorophyll protein (F...
The fucoxanthin chlorophyll (Chl) <i>a</i>/<i>c</i>-binding protein (FCP) is responsible for excelle...
Fucoxanthin chlorophyll (Chl) <i>a</i>/<i>c</i>-binding protein (FCP) is a unique light-harvesting a...
AbstractIn this work we have applied picosecond and steady-state fluorescence measurements to study ...
Transient absorption spectroscopy has been applied to investigate the energy dissipation mechanisms ...
AbstractPhotosynthetic organisms have developed vital strategies which allow them to switch from a l...
Photosynthetic organisms have developed vital strategies which allow them to switch from a light-har...
AbstractThe ultrafast caroteonid to chlorophyll a energy transfer dynamics of the isolated fucoxanth...
Diatoms generate a large portion of the oxygen produced on earth due to their exceptional light-harv...
In this work we have applied picosecond and steady-state fluorescence measurements to study excitati...
In photosynthesis, light energy is captured by pigments bound to light-harvesting antenna proteins (...
Diatoms are characterized by very efficient photoprotective mechanisms where the excess energy is di...
AbstractIn algae, light-harvesting complexes contain specific chlorophylls (Chls) and keto-carotenoi...
Strong excitonic interactions are a key design strategy in photosynthetic light harvesting, expandin...
We characterized the energy transfer pathways in the fucoxanthin–chlorophyll protein (FCP) complex o...
spectroscopy We characterized the energy transfer pathways in the fucoxanthin–chlorophyll protein (F...
The fucoxanthin chlorophyll (Chl) <i>a</i>/<i>c</i>-binding protein (FCP) is responsible for excelle...
Fucoxanthin chlorophyll (Chl) <i>a</i>/<i>c</i>-binding protein (FCP) is a unique light-harvesting a...
AbstractIn this work we have applied picosecond and steady-state fluorescence measurements to study ...
Transient absorption spectroscopy has been applied to investigate the energy dissipation mechanisms ...
AbstractPhotosynthetic organisms have developed vital strategies which allow them to switch from a l...
Photosynthetic organisms have developed vital strategies which allow them to switch from a light-har...
AbstractThe ultrafast caroteonid to chlorophyll a energy transfer dynamics of the isolated fucoxanth...
Diatoms generate a large portion of the oxygen produced on earth due to their exceptional light-harv...
In this work we have applied picosecond and steady-state fluorescence measurements to study excitati...
In photosynthesis, light energy is captured by pigments bound to light-harvesting antenna proteins (...
Diatoms are characterized by very efficient photoprotective mechanisms where the excess energy is di...
AbstractIn algae, light-harvesting complexes contain specific chlorophylls (Chls) and keto-carotenoi...