AbstractSelective excitation, at room temperature, in the long wavelength absorption tail of the photosystem I antenna complexes, known as light harvesting complex I, induces pronounced pre-equilibration fluorescence from the directly excited pigment state. This has allowed determination of the fluorescence band shape of this low energy photosystem I chlorophyll antenna state, at room temperature, for the first time. The emission maximum is near 735 nm. The remarkable band width (55 nm) and asymmetry have never been previously reported for chlorophyll a states
AbstractIn this work, we have investigated the role of the individual antenna complexes and of the l...
Photosystem I of higher plants is characterized by red-shifted spectral forms deriving from chloroph...
Photosystem I of higher plants is characterized by a typically long wavelength fluorescence emission...
Selective excitation, at room temperature, in the long wavelength absorption tail of the photosystem...
AbstractThe red antenna states of the external antenna complexes of higher plant photosystem I, know...
AbstractIn this work the spectroscopic properties of the special low-energy absorption bands of the ...
The red antenna states of the external antenna complexes of higher plant photosystem I, known as LHC...
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...
AbstractThe selectively red excited emission spectrum, at room temperature, of the in vitro reconsti...
In this work the spectroscopic properties of the special low-energy absorption bands of the outer an...
Photosystem I of higher plants is characterized by red-shifted spectral forms deriving from chloroph...
AbstractThe isolated subcomplex LHCI-730 of plant photosystem I (PSI) chlorophyll (Chl) a/b binding ...
Photosystem I with its full antenna complement (PSI-LHCI) has been prepared by mild detergent solubi...
AbstractIn this work, we have investigated the role of the individual antenna complexes and of the l...
Photosystem I of higher plants is characterized by red-shifted spectral forms deriving from chloroph...
Photosystem I of higher plants is characterized by a typically long wavelength fluorescence emission...
Selective excitation, at room temperature, in the long wavelength absorption tail of the photosystem...
AbstractThe red antenna states of the external antenna complexes of higher plant photosystem I, know...
AbstractIn this work the spectroscopic properties of the special low-energy absorption bands of the ...
The red antenna states of the external antenna complexes of higher plant photosystem I, known as LHC...
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...
AbstractThe selectively red excited emission spectrum, at room temperature, of the in vitro reconsti...
In this work the spectroscopic properties of the special low-energy absorption bands of the outer an...
Photosystem I of higher plants is characterized by red-shifted spectral forms deriving from chloroph...
AbstractThe isolated subcomplex LHCI-730 of plant photosystem I (PSI) chlorophyll (Chl) a/b binding ...
Photosystem I with its full antenna complement (PSI-LHCI) has been prepared by mild detergent solubi...
AbstractIn this work, we have investigated the role of the individual antenna complexes and of the l...
Photosystem I of higher plants is characterized by red-shifted spectral forms deriving from chloroph...
Photosystem I of higher plants is characterized by a typically long wavelength fluorescence emission...