Pathways of energy transfer in LHCII revealed by room-temperature 2D electronic spectroscopy
We present here the first room-temperature 2D electronic spectroscopy study of energy transfer in the plant light-harvesting complex II, LHCII. Two-dimensional electronic spectroscopy has been used to study energy transfer dynamics in LHCII trimers from the chlorophyll b Q y band to the chlorophyll...
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Veröffentlicht in: | Physical chemistry chemical physics : PCCP 2014-01, Vol.16 (23), p.1164-11646 |
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Sprache: | eng |
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Zusammenfassung: | We present here the first room-temperature 2D electronic spectroscopy study of energy transfer in the plant light-harvesting complex II, LHCII. Two-dimensional electronic spectroscopy has been used to study energy transfer dynamics in LHCII trimers from the chlorophyll
b
Q
y
band to the chlorophyll
a
Q
y
band. Observing cross-peak regions corresponding to couplings between different excitonic states reveals partially resolved fine structure at the exciton level that cannot be isolated by pump-probe or linear spectroscopy measurements alone. Global analysis of the data has been performed to identify the pathways and time constants of energy transfer. The measured waiting time (
T
w
) dependent 2D spectra are found to be composed of 2D decay-associated spectra with three timescales (0.3 ps, 2.3 ps and >20 ps). Direct and multistep cascading pathways from the high-energy chlorophyll
b
states to the lowest-energy chlorophyll
a
states have been resolved occurring on time scales of hundreds of femtoseconds to picoseconds.
We present here the first room-temperature 2D electronic spectroscopy study of energy transfer in the plant light-harvesting complex II, LHCII. |
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ISSN: | 1463-9076 1463-9084 |
DOI: | 10.1039/c4cp00876f |