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Keyphrases
Ferrocenyl
100%
Porphyrin
100%
Ferrocene
100%
Electron Transfer Mechanism
100%
Indium
100%
Fullerene Adducts
100%
Synthesis, Characterization
100%
Spectroelectrochemical Method
28%
Chemical Oxidation
28%
Ferrocene Ligands
28%
Mixed-valence Compounds
28%
Differential Pulse Voltammetry
28%
Molecular Structure
14%
Redox
14%
Electrolyte
14%
Redox Processes
14%
Oxidation Mechanism
14%
Electronic Structure
14%
Penta
14%
Density Functional Theory
14%
Antenna
14%
TETRA
14%
Iron-based
14%
X-ray Crystallography
14%
Density Functional Calculations
14%
Redox Properties
14%
Closely Spaced
14%
Charge Transfer Band
14%
Cyclic Voltammetry
14%
2-complex
14%
Elemental Analysis
14%
UV-VIS Spectroscopy
14%
Mixed Valence
14%
Spectroscopic Analysis
14%
Atropisomers
14%
1H-13C
14%
Oxidation Potential
14%
Metal-free
14%
Relative Energy
14%
Electron Transfer Channel
14%
Intervalence Charge Transfer
14%
Electrochemical Cyclic Voltammetry
14%
Sequential Oxidation
14%
Magnetic Circular Dichroism
14%
Electrochemical Experiment
14%
Polarity Solvents
14%
Low Oxidation Potential
14%
Rotational Barrier
14%
Indium(III)
14%
Circular Variables
14%
Electron Transfer Properties
14%
Substituted Porphyrins
14%
NIR Region
14%
Variable Temperature NMR Spectroscopy
14%
Metal-metal
14%
Structure Energy
14%
Mixed Valence Species
14%
Ferrocene-based
14%
Four-electron Transfer
14%
Chemistry
Transfer Process
100%
Porphyrin
100%
Ferrocene
100%
Indium
100%
Electron Transport
100%
Fullerene
100%
Mixed Valence
40%
Metallocene
20%
Cyclic Voltammetry
20%
Oxidation Potential
20%
Differential Pulse Voltammetry
20%
NMR Spectroscopy
10%
Oxidation Reaction
10%
UV/VIS Spectroscopy
10%
Electronic State
10%
Atropisomer
10%
Elemental Analysis
10%
Density Functional Theory Approaches
10%
Redox Process
10%
Rotational Barrier
10%
Magnetic Circular Dichroism
10%
Molecular Structure
10%
X-Ray Crystallography
10%
solvent polarity
10%
Density Functional Theory
10%
Intervalence Charge Transfer
10%