Vibronic Origin of the Qy Absorption Tail of Bacteriochlorophyll a Verified by Fluorescence Excitation Spectroscopy and Quantum Chemical Simulations
Author:
Affiliation:
1. Institute of Physics, University of Tartu, W. Ostwald Str. 1, Tartu 51011, Estonia
2. Institute of Molecular and Cell Biology, University of Tartu, Riia 23, Tartu 51014, Estonia
Funder
Australian Research Council
Eesti Teadusagentuur
Publisher
American Chemical Society (ACS)
Subject
General Materials Science,Physical and Theoretical Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/acs.jpclett.7b01704
Reference22 articles.
1. Challenges facing an understanding of the nature of low-energy excited states in photosynthesis
2. Up-converted fluorescence from photosynthetic light-harvesting complexes linearly dependent on excitation intensity
3. Demonstration and interpretation of significant asymmetry in the low-resolution and high-resolution Qy fluorescence and absorption spectra of bacteriochlorophyll a
4. Evidence for 5- and 6-coordinated magnesium in bacteriochlorophyll a from visible absorption spectroscopy
5. Temperature Dependence of Optical Spectra of Bacteriochlorophyll a in Solution and in Low-Temperature Glasses
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1. Electronic Structure of Chlorophyll Monomers and Oligomers;Chlorophylls;2022-09-07
2. Asymmetry in the Qy Fluorescence and Absorption Spectra of Chlorophyll a Pertaining to Exciton Dynamics;Frontiers in Chemistry;2020-12-02
3. Establishment of the Qy Absorption Spectrum of Chlorophyll a Extending to Near-Infrared;Molecules;2020-08-20
4. Higher Order Vibronic Sidebands of Chlorophyll a and Bacteriochlorophyll a for Enhanced Excitation Energy Transfer and Light Harvesting;The Journal of Physical Chemistry B;2019-07-29
5. Vibronic structure of photosynthetic pigments probed by polarized two-dimensional electronic spectroscopy andab initiocalculations;Chemical Science;2019
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