We consider the effect of a polar, hydrogen bond accepting, solvent environment on the excited state decay of catechol following excitation to its first excited singlet state (S1). A comparison of Fourier transform infrared spectroscopy and explicit-solvent ab initio frequency prediction suggests that 5 mM catechol in acetonitrile is both nonaggregated and in its “closed” conformation, contrary to what has been previously proposed. Using ultrafast transient absorption spectroscopy, we then demonstrate the effects of aggregation on the photoexcited S1 lifetime: at 5 mM catechol (nonaggregated) in acetonitrile, the S1 lifetime is 713 ps. In contrast at 75 mM catechol in acetonitrile, the S1 lifetime increases to 1700 ps. We attribute this dif...
International audienceWe are presenting vibrationally selective pump-probe measurements of the first...
Ultrafast time-resolved fluorescence spectroscopy has been used to investigate the excited-state dyn...
The electronic state manifolds of carotenoids and their relaxation dynamics are the object of intens...
We consider the effect of a polar, hydrogen bond accepting, solvent environment on the excited state...
We consider the effect of a polar, hydrogen bond accepting, solvent environment on the excited state...
The work in this thesis considers the effect of solvation on both electronic and vibrational spectro...
Eumelanin is a naturally synthesized ultraviolet light absorbing biomolecule, possessing both photop...
The underlying data for the paper "Examining Solvent Effects on the Ultrafast Dynamics of Catechol"....
The catechol functional group plays a major role in the chemistry of a wide variety of molecules imp...
The ability to probe energy flow in molecules, following the absorption of ultraviolet light, is cru...
Ultrafast time-resolved velocity map ion imaging (TR-VMI) and time-resolved ion-yield (TR-IY) method...
Ultrafast transient absorption spectroscopy was used to investigate the solvent dependent reaction d...
Ultrafast time-resolved fluorescence spectroscopy has been used to investigate the excited state d...
Ultrafast time-resolved fluorescence spectroscopy has been used to investigate the excited-state dyn...
Ultrafast time-resolved fluorescence spectroscopy has been used to investigate the excited-state dyn...
International audienceWe are presenting vibrationally selective pump-probe measurements of the first...
Ultrafast time-resolved fluorescence spectroscopy has been used to investigate the excited-state dyn...
The electronic state manifolds of carotenoids and their relaxation dynamics are the object of intens...
We consider the effect of a polar, hydrogen bond accepting, solvent environment on the excited state...
We consider the effect of a polar, hydrogen bond accepting, solvent environment on the excited state...
The work in this thesis considers the effect of solvation on both electronic and vibrational spectro...
Eumelanin is a naturally synthesized ultraviolet light absorbing biomolecule, possessing both photop...
The underlying data for the paper "Examining Solvent Effects on the Ultrafast Dynamics of Catechol"....
The catechol functional group plays a major role in the chemistry of a wide variety of molecules imp...
The ability to probe energy flow in molecules, following the absorption of ultraviolet light, is cru...
Ultrafast time-resolved velocity map ion imaging (TR-VMI) and time-resolved ion-yield (TR-IY) method...
Ultrafast transient absorption spectroscopy was used to investigate the solvent dependent reaction d...
Ultrafast time-resolved fluorescence spectroscopy has been used to investigate the excited state d...
Ultrafast time-resolved fluorescence spectroscopy has been used to investigate the excited-state dyn...
Ultrafast time-resolved fluorescence spectroscopy has been used to investigate the excited-state dyn...
International audienceWe are presenting vibrationally selective pump-probe measurements of the first...
Ultrafast time-resolved fluorescence spectroscopy has been used to investigate the excited-state dyn...
The electronic state manifolds of carotenoids and their relaxation dynamics are the object of intens...