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The photophysics of cryptophyte light-harvesting
Alexander B. Doust
, Krystyna E. Wilk
, Paul M.G. Curmi
,
Gregory D. Scholes
Research output
:
Contribution to journal
›
Article
›
peer-review
106
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Scopus citations
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Dive into the research topics of 'The photophysics of cryptophyte light-harvesting'. Together they form a unique fingerprint.
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Keyphrases
Cryptophytes
100%
Light Harvesting
100%
Photophysics
100%
Phycoerythrin 545
100%
Energy Transfer Dynamics
66%
C-phycocyanin (C-PC)
66%
Chroomonas
66%
Rhodomonas
66%
Circular Dichroism
33%
Photosynthesis
33%
Steady State
33%
Chromophore
33%
Resonance Energy Transfer
33%
Spectroscopic Measurement
33%
Transient Grating
33%
Kinetic Model
33%
Excited States
33%
Optical Properties
33%
Electronic Coupling
33%
Energy Transfer
33%
Quantum Chemical Calculations
33%
Phycobiliproteins
33%
Absorption Method
33%
Transition Density
33%
Chlorophyll a (Chl a)
33%
Transient Absorption
33%
Light-harvesting Complex II (LHCII)
33%
Isolated Protein
33%
Photosystem
33%
Phycobilin
33%
Green Light
33%
CRISTAL
33%
Ultrafast
33%
Polarization Anisotropy
33%
Chemistry
Energy Transfer
100%
Photophysics
100%
Light Harvesting
100%
Photosynthesis
66%
Fluorescence Resonance Energy Transfer
33%
Excited State
33%
Crystal Structure
33%
Optical Property
33%
Quantum Chemical Calculations
33%
Chemical Kinetics Characteristics
33%
Spectroscopy
33%
Cubic Crystal
33%
Light-Harvesting Complex
33%
Circular Dichroism
33%
Anisotropy
33%
Chromophore
33%
electronics
33%
Chlorophyll
33%
Biochemistry, Genetics and Molecular Biology
Energy Transfer
100%
Cryptophyta
100%
Light Harvesting
100%
Phycoerythrin
75%
Absorption
50%
Photosystem
50%
Light-Harvesting Complex
50%
Crystal Structure
25%
Steady State
25%
Phycobiliprotein
25%
Anisotropy
25%
Phycobilin
25%
Circular Dichroism
25%
Chlorophyll
25%