AbstractIn this study we use a combination of absorption, fluorescence and low temperature single-molecule spectroscopy to elucidate the spectral properties, heterogeneities and dynamics of the chlorophyll a (Chla) molecules responsible for the fluorescence emission of photosystem II core complexes (PS II cc) from the cyanobacterium Thermosynechococcus elongatus. At the ensemble level, the absorption and fluorescence spectra show a temperature dependence similar to plant PS II. We report emission spectra of single PS II cc for the first time; the spectra are dominated by zero-phonon lines (ZPLs) in the range between 680 and 705nm. The single-molecule experiments show unambiguously that different emitters and not only the lowest energy trap ...
AbstractWe have probed the absorption changes due to an externally applied electric field (Stark eff...
AbstractVisible/UV absorption in PS II core complexes is dominated by the chl-a absorptions, which e...
A key step in the photosynthetic reactions in photosystem II of green plants is the transfer of an e...
AbstractPhotosystem I of cyanobacteria contains different spectral pools of chlorophylls called red ...
The fluorescence of monomeric photosystem II core complexes (mPSIIcc) of the cyanobacterium Thermosy...
AbstractIt is now well established that the isolated photosystem II (PS II) reaction center complex ...
Single-molecule spectroscopy at low temperature was used to study the spectral properties, heterogen...
AbstractThe excitation-wavelength dependence of the excited-state dynamics of monomeric and trimeric...
AbstractSingle-molecule fluorescence spectroscopy at 1.4K was used to investigate the spectral prope...
AbstractAbsorbance difference spectra associated with the light-induced formation of functional stat...
AbstractCore antenna and reaction centre of photosytem I (PS I) complexes from the cyanobacteria Art...
AbstractBased on the structural analysis of photosystem II of Thermosynechococcus elongatus, a detai...
AbstractWe examined energy transfer dynamics in the unique chlorophyll (Chl) f-containing cyanobacte...
The experimentally obtained time-resolved fluorescence spectra of photosystem II (PS II) core comple...
AbstractA spectroscopic characterization of the chlorophyll a (Chl) molecule in the monomeric cytoch...
AbstractWe have probed the absorption changes due to an externally applied electric field (Stark eff...
AbstractVisible/UV absorption in PS II core complexes is dominated by the chl-a absorptions, which e...
A key step in the photosynthetic reactions in photosystem II of green plants is the transfer of an e...
AbstractPhotosystem I of cyanobacteria contains different spectral pools of chlorophylls called red ...
The fluorescence of monomeric photosystem II core complexes (mPSIIcc) of the cyanobacterium Thermosy...
AbstractIt is now well established that the isolated photosystem II (PS II) reaction center complex ...
Single-molecule spectroscopy at low temperature was used to study the spectral properties, heterogen...
AbstractThe excitation-wavelength dependence of the excited-state dynamics of monomeric and trimeric...
AbstractSingle-molecule fluorescence spectroscopy at 1.4K was used to investigate the spectral prope...
AbstractAbsorbance difference spectra associated with the light-induced formation of functional stat...
AbstractCore antenna and reaction centre of photosytem I (PS I) complexes from the cyanobacteria Art...
AbstractBased on the structural analysis of photosystem II of Thermosynechococcus elongatus, a detai...
AbstractWe examined energy transfer dynamics in the unique chlorophyll (Chl) f-containing cyanobacte...
The experimentally obtained time-resolved fluorescence spectra of photosystem II (PS II) core comple...
AbstractA spectroscopic characterization of the chlorophyll a (Chl) molecule in the monomeric cytoch...
AbstractWe have probed the absorption changes due to an externally applied electric field (Stark eff...
AbstractVisible/UV absorption in PS II core complexes is dominated by the chl-a absorptions, which e...
A key step in the photosynthetic reactions in photosystem II of green plants is the transfer of an e...