AbstractExcitation energy flow in the purple photosynthetic bacterium Rhodopseudomonas palustris grown under a low-light intensity was studied by time-resolved fluorescence spectroscopy in the ps time range. This bacterium synthesized the B824 component under this light condition. Time-resolved spectra at 20°C indicated the sequential energy flow in the order of B803, B856, B882 and B900, long wavelength antenna. An emission from B803 was not observed. A remarkable feature was the emission from B824 throughout the measuring time. After the excitation pulse of 100 ps, the spectra did not change any further, indicating the establishment of an equilibrium among components. Based on the energy distribution after equilibrium, parallel energy tra...
Steady state and time-resolved absorption and fluorescence spectroscopy have been used to investigat...
Using low intensity picosecond absorption spectroscopy with independently tunable excitation and pro...
AbstractUphill energy transfer in the LH2-containing purple bacteria Rhodopseudomonas acidophila, Rh...
AbstractExcitation energy flow in the purple photosynthetic bacterium Rhodopseudomonas palustris gro...
AbstractUphill energy transfer in the LH2-containing purple bacteria Rhodopseudomonas acidophila, Rh...
Energy transfer processes in photosynthetic light harvesting 2 (LH2) complexes isolated from purple ...
Using low intensity picosecond absorption spectroscopy with independently tunable excitation and pro...
Energy transfer (ET) between B850 and B875 molecules in light harvesting complexes LH2 and LH1/RC (r...
Energy transfer (ET) between B850 and B875 molecules in light harvesting complexes LH2 and LH1/RC (r...
Energy transfer (ET) between B850 and B875 molecules in light harvesting complexes LH2 and LH1/RC (r...
Energy transfer (ET) between B850 and B875 molecules in light harvesting complexes LH2 and LH1/RC (r...
Energy transfer (ET) between B850 and B875 molecules in light harvesting complexes LH2 and LH1/RC (r...
Energy transfer (ET) between B850 and B875 molecules in light harvesting complexes LH2 and LH1/RC (r...
Three photosynthetic membranes, called intra-cytoplasmic membranes (ICMs), from wild-type and the ∆p...
AbstractEnergy transfer in the antenna of the purple non-sulfur bacterium Rhodopseudomonas cryptolac...
Steady state and time-resolved absorption and fluorescence spectroscopy have been used to investigat...
Using low intensity picosecond absorption spectroscopy with independently tunable excitation and pro...
AbstractUphill energy transfer in the LH2-containing purple bacteria Rhodopseudomonas acidophila, Rh...
AbstractExcitation energy flow in the purple photosynthetic bacterium Rhodopseudomonas palustris gro...
AbstractUphill energy transfer in the LH2-containing purple bacteria Rhodopseudomonas acidophila, Rh...
Energy transfer processes in photosynthetic light harvesting 2 (LH2) complexes isolated from purple ...
Using low intensity picosecond absorption spectroscopy with independently tunable excitation and pro...
Energy transfer (ET) between B850 and B875 molecules in light harvesting complexes LH2 and LH1/RC (r...
Energy transfer (ET) between B850 and B875 molecules in light harvesting complexes LH2 and LH1/RC (r...
Energy transfer (ET) between B850 and B875 molecules in light harvesting complexes LH2 and LH1/RC (r...
Energy transfer (ET) between B850 and B875 molecules in light harvesting complexes LH2 and LH1/RC (r...
Energy transfer (ET) between B850 and B875 molecules in light harvesting complexes LH2 and LH1/RC (r...
Energy transfer (ET) between B850 and B875 molecules in light harvesting complexes LH2 and LH1/RC (r...
Three photosynthetic membranes, called intra-cytoplasmic membranes (ICMs), from wild-type and the ∆p...
AbstractEnergy transfer in the antenna of the purple non-sulfur bacterium Rhodopseudomonas cryptolac...
Steady state and time-resolved absorption and fluorescence spectroscopy have been used to investigat...
Using low intensity picosecond absorption spectroscopy with independently tunable excitation and pro...
AbstractUphill energy transfer in the LH2-containing purple bacteria Rhodopseudomonas acidophila, Rh...