Local protein solvation drives direct down-conversion in phycobiliprotein PC645 via incoherent vibronic transport [Chemistry]

Publication Date:
2018-04-11
Publisher:
National Academy of Sciences
Print ISSN:
0027-8424
Electronic ISSN:
1091-6490
Topics:
Biology
Medicine
Natural Sciences in General
Published by:
_version_ 1836398887658586112
autor Samuel M. Blau, Doran I. G. Bennett, Christoph Kreisbeck, Gregory D. Scholes, Alan Aspuru–Guzik
beschreibung The mechanisms controlling excitation energy transport (EET) in light-harvesting complexes remain controversial. Following the observation of long-lived beats in 2D electronic spectroscopy of PC645, vibronic coherence, the delocalization of excited states between pigments supported by a resonant vibration, has been proposed to enable direct excitation transport from the highest-energy to...
citation_standardnr 6231702
datenlieferant ipn_articles
feed_id 113
feed_publisher National Academy of Sciences
feed_publisher_url http://www.nasonline.org/
insertion_date 2018-04-11
journaleissn 1091-6490
journalissn 0027-8424
publikationsjahr_anzeige 2018
publikationsjahr_facette 2018
publikationsjahr_intervall 7984:2015-2019
publikationsjahr_sort 2018
publisher National Academy of Sciences
quelle PNAS - Proceedings of the National Academy of Sciences
relation http://www.pnas.org/content/115/15/E3342.short?rss=1
search_space articles
shingle_author_1 Samuel M. Blau, Doran I. G. Bennett, Christoph Kreisbeck, Gregory D. Scholes, Alan Aspuru–Guzik
shingle_author_2 Samuel M. Blau, Doran I. G. Bennett, Christoph Kreisbeck, Gregory D. Scholes, Alan Aspuru–Guzik
shingle_author_3 Samuel M. Blau, Doran I. G. Bennett, Christoph Kreisbeck, Gregory D. Scholes, Alan Aspuru–Guzik
shingle_author_4 Samuel M. Blau, Doran I. G. Bennett, Christoph Kreisbeck, Gregory D. Scholes, Alan Aspuru–Guzik
shingle_catch_all_1 Local protein solvation drives direct down-conversion in phycobiliprotein PC645 via incoherent vibronic transport [Chemistry]
The mechanisms controlling excitation energy transport (EET) in light-harvesting complexes remain controversial. Following the observation of long-lived beats in 2D electronic spectroscopy of PC645, vibronic coherence, the delocalization of excited states between pigments supported by a resonant vibration, has been proposed to enable direct excitation transport from the highest-energy to...
Samuel M. Blau, Doran I. G. Bennett, Christoph Kreisbeck, Gregory D. Scholes, Alan Aspuru–Guzik
National Academy of Sciences
0027-8424
00278424
1091-6490
10916490
shingle_catch_all_2 Local protein solvation drives direct down-conversion in phycobiliprotein PC645 via incoherent vibronic transport [Chemistry]
The mechanisms controlling excitation energy transport (EET) in light-harvesting complexes remain controversial. Following the observation of long-lived beats in 2D electronic spectroscopy of PC645, vibronic coherence, the delocalization of excited states between pigments supported by a resonant vibration, has been proposed to enable direct excitation transport from the highest-energy to...
Samuel M. Blau, Doran I. G. Bennett, Christoph Kreisbeck, Gregory D. Scholes, Alan Aspuru–Guzik
National Academy of Sciences
0027-8424
00278424
1091-6490
10916490
shingle_catch_all_3 Local protein solvation drives direct down-conversion in phycobiliprotein PC645 via incoherent vibronic transport [Chemistry]
The mechanisms controlling excitation energy transport (EET) in light-harvesting complexes remain controversial. Following the observation of long-lived beats in 2D electronic spectroscopy of PC645, vibronic coherence, the delocalization of excited states between pigments supported by a resonant vibration, has been proposed to enable direct excitation transport from the highest-energy to...
Samuel M. Blau, Doran I. G. Bennett, Christoph Kreisbeck, Gregory D. Scholes, Alan Aspuru–Guzik
National Academy of Sciences
0027-8424
00278424
1091-6490
10916490
shingle_catch_all_4 Local protein solvation drives direct down-conversion in phycobiliprotein PC645 via incoherent vibronic transport [Chemistry]
The mechanisms controlling excitation energy transport (EET) in light-harvesting complexes remain controversial. Following the observation of long-lived beats in 2D electronic spectroscopy of PC645, vibronic coherence, the delocalization of excited states between pigments supported by a resonant vibration, has been proposed to enable direct excitation transport from the highest-energy to...
Samuel M. Blau, Doran I. G. Bennett, Christoph Kreisbeck, Gregory D. Scholes, Alan Aspuru–Guzik
National Academy of Sciences
0027-8424
00278424
1091-6490
10916490
shingle_title_1 Local protein solvation drives direct down-conversion in phycobiliprotein PC645 via incoherent vibronic transport [Chemistry]
shingle_title_2 Local protein solvation drives direct down-conversion in phycobiliprotein PC645 via incoherent vibronic transport [Chemistry]
shingle_title_3 Local protein solvation drives direct down-conversion in phycobiliprotein PC645 via incoherent vibronic transport [Chemistry]
shingle_title_4 Local protein solvation drives direct down-conversion in phycobiliprotein PC645 via incoherent vibronic transport [Chemistry]
timestamp 2025-06-30T23:34:13.617Z
titel Local protein solvation drives direct down-conversion in phycobiliprotein PC645 via incoherent vibronic transport [Chemistry]
titel_suche Local protein solvation drives direct down-conversion in phycobiliprotein PC645 via incoherent vibronic transport [Chemistry]
topic W
WW-YZ
TA-TD
uid ipn_articles_6231702