AbstractWe combine ensemble and single-molecule spectroscopy to gain insight into the energy transfer between chlorophylls (Chls) in peridinin-chlorophyll-protein (PCP) complexes reconstituted with Chl a, Chl b, as well as both Chl a and Chl b. The main focus is the heterochlorophyllous system (Chl a/b-N-PCP), and reference information essential to interpret experimental observations is obtained from homochlorophyllous complexes. Energy transfer between Chls in Chl a/b-N-PCP takes place from Chl b to Chl a and also from Chl a to Chl b with comparable Förster energy transfer rates of 0.0324 and 0.0215ps−1, respectively. Monte Carlo simulations yield the ratio of 39:61 for the excitation distribution between Chl a and Chl b, which is larger t...
AbstractThe triplet state of the carotenoid peridinin, populated by triplet–triplet energy transfer ...
AbstractPeridinin-chlorophyll-protein (PCP) is a unique light-harvesting protein that uses carotenoi...
Abstract We present a computationally derived energy transfer model for the peridinin-chlorophyll a-...
AbstractWe combine ensemble and single-molecule spectroscopy to gain insight into the energy transfe...
AbstractWe use femtosecond transient absorption spectroscopy to study chlorophyll (Chl)-Chl energy t...
AbstractSingle molecule spectroscopy experiments are reported for native peridinin–chlorophyll a–pro...
Single molecule spectroscopy experiments are reported for native peridinin-chlorophyll a-protein (PC...
Single molecule spectroscopy experiments are reported for native peridinin chlorophyll a protein (PC...
AbstractTime-resolved fluorescence anisotropy spectroscopy has been used to study the chlorophyll a ...
We use femtosecond transient absorption spectroscopy to study chlorophyll (Chl)-Chl energy transfer ...
In vitro studies of the carotenoid peridinin, which is the primary pigment from the peridinin chloro...
The subtle details of the mechanism of energy flow from carotenoids to chlorophylls in biological li...
AbstractReconstitution of the 16kDa N-terminal domain of the peridinin–chlorophyll–protein, N-PCP, w...
AbstractThe energy transfer processes between Chls b and Chls a have been studied in the minor anten...
AbstractWe present a computationally derived energy transfer model for the peridinin–chlorophyll a-p...
AbstractThe triplet state of the carotenoid peridinin, populated by triplet–triplet energy transfer ...
AbstractPeridinin-chlorophyll-protein (PCP) is a unique light-harvesting protein that uses carotenoi...
Abstract We present a computationally derived energy transfer model for the peridinin-chlorophyll a-...
AbstractWe combine ensemble and single-molecule spectroscopy to gain insight into the energy transfe...
AbstractWe use femtosecond transient absorption spectroscopy to study chlorophyll (Chl)-Chl energy t...
AbstractSingle molecule spectroscopy experiments are reported for native peridinin–chlorophyll a–pro...
Single molecule spectroscopy experiments are reported for native peridinin-chlorophyll a-protein (PC...
Single molecule spectroscopy experiments are reported for native peridinin chlorophyll a protein (PC...
AbstractTime-resolved fluorescence anisotropy spectroscopy has been used to study the chlorophyll a ...
We use femtosecond transient absorption spectroscopy to study chlorophyll (Chl)-Chl energy transfer ...
In vitro studies of the carotenoid peridinin, which is the primary pigment from the peridinin chloro...
The subtle details of the mechanism of energy flow from carotenoids to chlorophylls in biological li...
AbstractReconstitution of the 16kDa N-terminal domain of the peridinin–chlorophyll–protein, N-PCP, w...
AbstractThe energy transfer processes between Chls b and Chls a have been studied in the minor anten...
AbstractWe present a computationally derived energy transfer model for the peridinin–chlorophyll a-p...
AbstractThe triplet state of the carotenoid peridinin, populated by triplet–triplet energy transfer ...
AbstractPeridinin-chlorophyll-protein (PCP) is a unique light-harvesting protein that uses carotenoi...
Abstract We present a computationally derived energy transfer model for the peridinin-chlorophyll a-...