In this work the spectroscopic properties of the special low-energy absorption bands of the outer antenna complexes of higher plant Photosystem I have been investigated by means of low-temperature absorption, fluorescence, and fluorescence line- narrowing experiments. It was found that the red- most absorption bands of Lhca3, Lhca4, and Lhca1-4 peak, respectively, at 704, 708, and 709 nm and are responsible for 725-, 733-, and 732- nm fluorescence emission bands. These bands are more red shifted compared to ``normal'' chlorophyll a (Chl a) bands present in light-harvesting complexes. The low-energy forms are characterized by a very large bandwidth (400-450 cm(-1)), which is the result of both large homogeneous and inhomogeneous broadening. ...
The peripheral light-harvesting complex of photosystem I contains red chlorophylls (Chls) that, unli...
Photosystem I of higher plants is characterized by red-shifted spectral forms deriving from chloroph...
AbstractThe red antenna states of the external antenna complexes of higher plant photosystem I, know...
In this work the spectroscopic properties of the special low-energy absorption bands of the outer an...
AbstractIn this work the spectroscopic properties of the special low-energy absorption bands of the ...
In this work the spectroscopic properties of the special low-energy absorption bands of the outer an...
In this work the spectroscopic properties of the special low-energy absorption bands of the outer an...
ABSTRACT In this work the spectroscopic properties of the special low-energy absorption bands of the...
The red-most fluorescence emission of photosystem I (733 nm at 4 K) is associated with the Lhca4 sub...
AbstractThe selectively red excited emission spectrum, at room temperature, of the in vitro reconsti...
AbstractThe peripheral light-harvesting complex of photosystem I contains red chlorophylls (Chls) th...
Photosystem I of higher plants is characterized by a typically long wavelength fluorescence emission...
The peripheral light-harvesting complex of photosystem I contains red chlorophylls (Chls) that, unli...
The red-most fluorescence emission of photosystem I (733 nm at 4 K) is associated with the Lhca4 sub...
AbstractSelective excitation, at room temperature, in the long wavelength absorption tail of the pho...
The peripheral light-harvesting complex of photosystem I contains red chlorophylls (Chls) that, unli...
Photosystem I of higher plants is characterized by red-shifted spectral forms deriving from chloroph...
AbstractThe red antenna states of the external antenna complexes of higher plant photosystem I, know...
In this work the spectroscopic properties of the special low-energy absorption bands of the outer an...
AbstractIn this work the spectroscopic properties of the special low-energy absorption bands of the ...
In this work the spectroscopic properties of the special low-energy absorption bands of the outer an...
In this work the spectroscopic properties of the special low-energy absorption bands of the outer an...
ABSTRACT In this work the spectroscopic properties of the special low-energy absorption bands of the...
The red-most fluorescence emission of photosystem I (733 nm at 4 K) is associated with the Lhca4 sub...
AbstractThe selectively red excited emission spectrum, at room temperature, of the in vitro reconsti...
AbstractThe peripheral light-harvesting complex of photosystem I contains red chlorophylls (Chls) th...
Photosystem I of higher plants is characterized by a typically long wavelength fluorescence emission...
The peripheral light-harvesting complex of photosystem I contains red chlorophylls (Chls) that, unli...
The red-most fluorescence emission of photosystem I (733 nm at 4 K) is associated with the Lhca4 sub...
AbstractSelective excitation, at room temperature, in the long wavelength absorption tail of the pho...
The peripheral light-harvesting complex of photosystem I contains red chlorophylls (Chls) that, unli...
Photosystem I of higher plants is characterized by red-shifted spectral forms deriving from chloroph...
AbstractThe red antenna states of the external antenna complexes of higher plant photosystem I, know...