The dynamics of excited-state double proton transfer of model DNA base pairs, 7-azaindole dimers, is reported using femtosecond fluorescence spectroscopy. To elucidate the nature of the transfer in the condensed phase, here we examine variation of solvent polarity and viscosity, solute concentration, and isotopic fractionation. The rate of proton transfer is found to be significantly dependent on polarity and on the isotopic composition in the pair. Consistent with a stepwise mechanism, the results support the presence of an ionic intermediate species which forms on the femtosecond time scale and decays to the final tautomeric form on the picosecond time scale. We discuss the results in relation to the molecular motions involved and comment...
Charge transfer reactions are ubiquitous in chemical reactivity and often viewed as ultrafast proces...
The conformational flexibility of the DNA double helix is of great interest because of its potential...
Characterization of the excited electronic states and relaxation processes in DNA systems is critica...
The dynamics of excited-state double proton transfer of model DNA base pairs, 7-azaindole dimers, is...
The dynamics of double proton transfer in 7-azaindole (7-AI) dimers, a model DNA base pair, are inve...
Femtosecond, real-time dynamics of a hydrogen-bonded model base pair (7-azaindole dimer) in the cond...
Herein we present our results on the study of the double proton transfer (DPT) mechanism in the aden...
Hydrogen bonds commonly lend robustness and directionality to molecular recognition processes and su...
The intermediacy of the geminate base proton pair (A*center dot center dot center dot H(+)) in excit...
Solvent effects on the excited-state double proton transfer (ESDPT) mechanism in the 7-azaindole (7A...
The photoinduced dynamics in base pairs of adenine and thymine were analyzed by femtosecond pump-pro...
Author Institution: Department of Chemistry, The Ohio State University, 100 West 18th Avenue, Columb...
The ultrafast dynamics of nucleic acids have been under scrutiny for the past couple of decades beca...
International audienceCharge transfer reactions are ubiquitous in chemical reactivity and often view...
As a fluorescent isomer of adenine, 2-aminopurine (Ap) is a powerful probe of DNA dynamics and DNA-m...
Charge transfer reactions are ubiquitous in chemical reactivity and often viewed as ultrafast proces...
The conformational flexibility of the DNA double helix is of great interest because of its potential...
Characterization of the excited electronic states and relaxation processes in DNA systems is critica...
The dynamics of excited-state double proton transfer of model DNA base pairs, 7-azaindole dimers, is...
The dynamics of double proton transfer in 7-azaindole (7-AI) dimers, a model DNA base pair, are inve...
Femtosecond, real-time dynamics of a hydrogen-bonded model base pair (7-azaindole dimer) in the cond...
Herein we present our results on the study of the double proton transfer (DPT) mechanism in the aden...
Hydrogen bonds commonly lend robustness and directionality to molecular recognition processes and su...
The intermediacy of the geminate base proton pair (A*center dot center dot center dot H(+)) in excit...
Solvent effects on the excited-state double proton transfer (ESDPT) mechanism in the 7-azaindole (7A...
The photoinduced dynamics in base pairs of adenine and thymine were analyzed by femtosecond pump-pro...
Author Institution: Department of Chemistry, The Ohio State University, 100 West 18th Avenue, Columb...
The ultrafast dynamics of nucleic acids have been under scrutiny for the past couple of decades beca...
International audienceCharge transfer reactions are ubiquitous in chemical reactivity and often view...
As a fluorescent isomer of adenine, 2-aminopurine (Ap) is a powerful probe of DNA dynamics and DNA-m...
Charge transfer reactions are ubiquitous in chemical reactivity and often viewed as ultrafast proces...
The conformational flexibility of the DNA double helix is of great interest because of its potential...
Characterization of the excited electronic states and relaxation processes in DNA systems is critica...