Xiang Li, Mark Maroncelli
Index: J. Phys. Chem. A 115(16) , 3746-54, (2011)
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Steady-state and picosecond time-resolved emission experiments are used to examine the excited-state charge transfer reaction of crystal violet lactone (CVL) in aprotic solvents. Solvatochromic analysis using a dielectric continuum model suggests dipole moments of 9-12 D for the initially excited (LE) state and ∼24 D for the charge-transfer (CT) state. Intensities of steady-state emission as well as kinetic data provide free energies for the LE → CT reaction that range from +12 kJ/mol in nonpolar solvents to -10 kJ/mol in highly polar solvents at 25 °C. Reaction rates constants, which lie in the range of 10-100 ns(-1) in most solvents, depend on both solvent polarity and solvent friction. In highly polar solvents, rates are correlated to solvation times in a manner that indicates that the reaction is a solvent-controlled electron transfer on an adiabatic potential surface having a modest barrier.
Structure | Name/CAS No. | Molecular Formula | Articles |
---|---|---|---|
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Crystal violet lactone
CAS:1552-42-7 |
C26H29N3O2 |
Dermatitis from crystal violet.
1988-08-01 [Contact Dermatitis 19(2) , 141-2, (1988)] |
Allergic contact dermatitis to crystal violet lactone [corre...
1987-11-01 [Contact Dermatitis 17(5) , 310-1, (1987)] |
Solid phase adsorption of crystal violet lactone on silica n...
2008-06-01 [Langmuir 24(13) , 6470-9, (2008)] |
The key role of solvation dynamics in intramolecular electro...
2008-09-18 [J. Phys. Chem. A 112(37) , 8487-96, (2008)] |
The percutaneous absorption of triarylmethane and phenoxazin...
1986-01-01 [Ann. Occup. Hyg. 30(1) , 115-22, (1986)] |
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