Publication | Open Access
Tight-binding model of the photosystem II reaction center: application to two-dimensional electronic spectroscopy
57
Citations
64
References
2013
Year
Excitation Energy TransferComputational ChemistryChemistryElectronic Excited StateSpectra-structure CorrelationTwo-dimensional Electronic SpectroscopyPigment BiochemistryPhotosynthesisPhotophysical PropertyBiophysicsHealth SciencesFast FluctuationsPhotochemistryPhotosystemsPhysicsMechanistic PhotochemistryPsii RcReaction CenterPhysical ChemistryQuantum ChemistryExcited State PropertyNatural SciencesSpectroscopyTight-binding Model
We propose an optimized tight-binding electron–hole model of the photosystem II (PSII) reaction center (RC). Our model incorporates two charge separation pathways and spatial correlations of both static disorder and fast fluctuations of energy levels. It captures the main experimental features observed in time-resolved two-dimensional (2D) optical spectra at 77 K: peak pattern, lineshapes and time traces. Analysis of 2D spectra kinetics reveals that specific regions of the 2D spectra of the PSII RC are sensitive to the charge transfer states. We find that the energy disorder of two peripheral chlorophylls is four times larger than the other RC pigments.
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