AbstractThe energy equilibration and transfer processes in the isolated core antenna complexes CP43 and CP47 of photosystem II have been studied by steady-state and ultrafast (femto- to nanosecond) time-resolved spectroscopy at room temperature. The annihilation-free femtosecond absorption data can be described by surprisingly simple sequential kinetic models, in which the excitation energy transfer between blue and red states in both antenna complexes is dominated by sub-picosecond processes and is completed in less than 2ps. The slowest energy transfer steps with lifetimes in the range of 1–2ps are assigned to transfer steps between the chlorophyll layers located on the stromal and lumenal sides. We conclude that these ultrafast intra-ant...
The fluorescence decay kinetics of Photosystem II (PSII) membranes from spinach with open reaction c...
AbstractPicosecond absorbance changes in the Qy absorption region were measured on Photosystem II co...
AbstractPicosecond absorption spectroscopy has been used to study energy transfer within the isolate...
AbstractThe energy equilibration and transfer processes in the isolated core antenna complexes CP43 ...
AbstractThe pigment-protein complexes CP43 and CP47 transfer excitation energy from the peripheral a...
Antenna complexes are key components of plant photosynthesis, the process that converts sunlight, CO...
Antenna complexes are key components of plant photosynthesis, the process that converts sunlight, CO...
AbstractThe core of photosystem II (PSII) of green plants contains the reaction center (RC) proteins...
AbstractAntenna complexes are key components of plant photosynthesis, the process that converts sunl...
The CP47-RC complex of photosystem II (PS II) has an antenna subunit of 16 chlorophyll a molecules a...
CP47 is one of the two core antenna proteins of Photosystem II involved in the transfer of solar ene...
AbstractThe excitation transport and trapping kinetics of core antenna-reaction center complexes fro...
The energy transfer process in the minor light-harvesting antenna complex CP29 of green plants was p...
Photosystem I is a robust and highly efficient biological solar engine. Its capacity to utilize virt...
Excitation energy transfer and trapping processes in an iron stress-induced supercomplex of photosys...
The fluorescence decay kinetics of Photosystem II (PSII) membranes from spinach with open reaction c...
AbstractPicosecond absorbance changes in the Qy absorption region were measured on Photosystem II co...
AbstractPicosecond absorption spectroscopy has been used to study energy transfer within the isolate...
AbstractThe energy equilibration and transfer processes in the isolated core antenna complexes CP43 ...
AbstractThe pigment-protein complexes CP43 and CP47 transfer excitation energy from the peripheral a...
Antenna complexes are key components of plant photosynthesis, the process that converts sunlight, CO...
Antenna complexes are key components of plant photosynthesis, the process that converts sunlight, CO...
AbstractThe core of photosystem II (PSII) of green plants contains the reaction center (RC) proteins...
AbstractAntenna complexes are key components of plant photosynthesis, the process that converts sunl...
The CP47-RC complex of photosystem II (PS II) has an antenna subunit of 16 chlorophyll a molecules a...
CP47 is one of the two core antenna proteins of Photosystem II involved in the transfer of solar ene...
AbstractThe excitation transport and trapping kinetics of core antenna-reaction center complexes fro...
The energy transfer process in the minor light-harvesting antenna complex CP29 of green plants was p...
Photosystem I is a robust and highly efficient biological solar engine. Its capacity to utilize virt...
Excitation energy transfer and trapping processes in an iron stress-induced supercomplex of photosys...
The fluorescence decay kinetics of Photosystem II (PSII) membranes from spinach with open reaction c...
AbstractPicosecond absorbance changes in the Qy absorption region were measured on Photosystem II co...
AbstractPicosecond absorption spectroscopy has been used to study energy transfer within the isolate...