AbstractBoth chlorophyll f and chlorophyll d are red-shifted chlorophylls in oxygenic photosynthetic organisms, which extend photon absorbance into the near infrared region. This expands the range of light that can be used to drive photosynthesis. Quantitative determination of chlorophylls is a crucial step in the investigation of chlorophyll-photosynthetic reactions in the field of photobiology and photochemistry. No methods have yet been worked out for the quantitative determination of chlorophyll f. There is also no method available for the precise quantitative determination of chlorophyll d although it was discovered in 1943. In order to obtain the extinction coefficients (ε) of chlorophyll f and chlorophyll d, the concentrations of chl...
We present ground and excited state frequency calculations of the recently discovered extremely red-...
International audiencePhotosystems I and II convert solar energy into the chemical energy that power...
The energy transfer rates between chlorophylls in the light harvesting complex CP29 of higher plants...
Both chlorophyll f and chlorophyll d are red-shifted chlorophylls in oxygenic photosynthetic organis...
Chlorophylls are essential for light-harvesting and energy transduction in photosynthesis. Four chem...
Chlorophyll a (Chl a) has always been regarded as the sole chlorophyll with a role in photochemical ...
AbstractThe absorption properties of chlorophyll a (Chla) in active core complexes of photosystems I...
AbstractIn oxygenic photosynthesis the cytochrome bf complex links electron transport between photos...
The pigment absorption peak in the red waveband observed in phytoplankton and particulate absorption...
Photon capture by chlorophylls and other chromophores in light-harvesting complexes and photosystems...
AbstractWe report production of chlorophyll f and chlorophyll d in the cyanobacterium Chlorogloeopsi...
The room temperature absorption bandshape for the Q transition region of chlorophyll a is calculated...
The Stepanov equation, relating the intensity of emission, fe(v¯), at a given frequency, and that of...
AbstractThe room temperature absorption bandshape for the Q transition region of chlorophyll a is ca...
Photosystems I and II convert solar energy into the chemical energy that powers life. Chlorophyll a ...
We present ground and excited state frequency calculations of the recently discovered extremely red-...
International audiencePhotosystems I and II convert solar energy into the chemical energy that power...
The energy transfer rates between chlorophylls in the light harvesting complex CP29 of higher plants...
Both chlorophyll f and chlorophyll d are red-shifted chlorophylls in oxygenic photosynthetic organis...
Chlorophylls are essential for light-harvesting and energy transduction in photosynthesis. Four chem...
Chlorophyll a (Chl a) has always been regarded as the sole chlorophyll with a role in photochemical ...
AbstractThe absorption properties of chlorophyll a (Chla) in active core complexes of photosystems I...
AbstractIn oxygenic photosynthesis the cytochrome bf complex links electron transport between photos...
The pigment absorption peak in the red waveband observed in phytoplankton and particulate absorption...
Photon capture by chlorophylls and other chromophores in light-harvesting complexes and photosystems...
AbstractWe report production of chlorophyll f and chlorophyll d in the cyanobacterium Chlorogloeopsi...
The room temperature absorption bandshape for the Q transition region of chlorophyll a is calculated...
The Stepanov equation, relating the intensity of emission, fe(v¯), at a given frequency, and that of...
AbstractThe room temperature absorption bandshape for the Q transition region of chlorophyll a is ca...
Photosystems I and II convert solar energy into the chemical energy that powers life. Chlorophyll a ...
We present ground and excited state frequency calculations of the recently discovered extremely red-...
International audiencePhotosystems I and II convert solar energy into the chemical energy that power...
The energy transfer rates between chlorophylls in the light harvesting complex CP29 of higher plants...