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Intermolecular Modes between LH2 Bacteriochlorophylls and Protein Residues: The Effect on the Excitation Energies
Andre Anda, Luca De Vico,
Thorsten Hansen
Department of Chemistry
17
Citations (Scopus)
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Dive into the research topics of 'Intermolecular Modes between LH2 Bacteriochlorophylls and Protein Residues: The Effect on the Excitation Energies'. Together they form a unique fingerprint.
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Engineering & Materials Science
Excitation energy
100%
Chromophores
67%
Proteins
54%
Proteobacteria
36%
Excited states
32%
Potential energy surfaces
32%
Photosynthesis
30%
Ligands
26%
Photons
23%
Hydrogen
15%
Physics & Astronomy
proteins
47%
excitation
28%
chromophores
25%
transportation energy
20%
energy
17%
photosynthesis
15%
bacteria
12%
oscillator strengths
12%
ligands
11%
potential energy
10%
degrees of freedom
9%
interactions
9%
hydrogen
7%
photons
6%
Chemical Compounds
Bacteriochlorophyll
75%
Energy
27%
Protein
24%
Oscillator Strength
18%
Photosynthesis
16%
Photon
14%
Potential Energy Surface
14%
Excited State
11%
Ligand
6%