6533b7d5fe1ef96bd12648b5

RESEARCH PRODUCT

Relaxation Mechanisms of 5-Azacytosine.

Antonio Carlos BorinAngelo GiussaniJoão Paulo GobboManuela Merchán

subject

ChemistryRelaxation (NMR)NanotechnologyMolecular physicsComputer Science ApplicationsNucleobaseIntersystem crossingExcited stateNUCLEOSÍDEOSMoleculePhysical and Theoretical ChemistryTriplet stateGround stateQuantum

description

The photophysics and deactivation pathways of the noncanonical 5-azacytosine nucleobase were studied using the CASPT2//CASSCF protocol. One of the most significant differences with respect to the parent molecule cytosine is the presence of a dark (1)(nNπ*) excited state placed energetically below the bright excited state (1)(ππ*) at the Franck-Condon region. The main photoresponse of the system is a presumably efficient radiationless decay back to the original ground state, mediated by two accessible conical intersections involving a population transfer from the (1)(ππ*) and the (1)(nNπ*) states to the ground state. Therefore, a minor contribution of the triplet states in the photophysics of the system is expected, despite the presence of a deactivation path leading to the lowest (3)(ππ*) triplet state. The global scenario on the photophysics and photochemistry of the 5-azacytosine system gathered on theoretical grounds is consistent with the available experimental data, taking especially into account the low values of the singlet-triplet intersystem crossing and fluorescence quantum yields observed.

10.1021/ct5003175https://pubmed.ncbi.nlm.nih.gov/26588535