For the first time, ultrafast deactivations of photoexcited water-solvated pyrimidine nucleosides are mapped employing hybrid QM(CASPT2)/MM(AMBER) optimizations that account for explicit solvation, sugar effects, and dynamically correlated potential energy surfaces. Low-energy S1/S0 ring-puckering and ring-opening conical intersections (CIs) are suggested to drive the ballistic coherent subpicosecond (<200 fs) decays observed in each pyrimidine, the energetics controlling this processes correlating with the lifetimes observed. A second bright (1)π2π* state, promoting excited-state population branching and leading toward a third CI with the ground state, is proposed to be involved in the slower ultrafast decay component observed in Thd/Cyd. The transient spectroscopic signals of the competitive deactivation channels are computed for the first time. A general unified scheme for ultrafast deactivations, spanning the sub- to few-picosecond time domain, is eventually delivered, with computed data that matches the experiments and elucidates the intrinsic photoprotection mechanism in solvated pyrimidine nucleosides.

Pepino, A.J., Segarra-Martí, J., Nenov, A., Improta, R., Garavelli, M. (2017). Resolving Ultrafast Photoinduced Deactivations in Water-Solvated Pyrimidine Nucleosides. THE JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 8(8), 1777-1783 [10.1021/acs.jpclett.7b00316].

Resolving Ultrafast Photoinduced Deactivations in Water-Solvated Pyrimidine Nucleosides

PEPINO, ANA JULIETA;SEGARRA MARTI, JAVIER;NENOV, ARTUR;GARAVELLI, MARCO
2017

Abstract

For the first time, ultrafast deactivations of photoexcited water-solvated pyrimidine nucleosides are mapped employing hybrid QM(CASPT2)/MM(AMBER) optimizations that account for explicit solvation, sugar effects, and dynamically correlated potential energy surfaces. Low-energy S1/S0 ring-puckering and ring-opening conical intersections (CIs) are suggested to drive the ballistic coherent subpicosecond (<200 fs) decays observed in each pyrimidine, the energetics controlling this processes correlating with the lifetimes observed. A second bright (1)π2π* state, promoting excited-state population branching and leading toward a third CI with the ground state, is proposed to be involved in the slower ultrafast decay component observed in Thd/Cyd. The transient spectroscopic signals of the competitive deactivation channels are computed for the first time. A general unified scheme for ultrafast deactivations, spanning the sub- to few-picosecond time domain, is eventually delivered, with computed data that matches the experiments and elucidates the intrinsic photoprotection mechanism in solvated pyrimidine nucleosides.
2017
Pepino, A.J., Segarra-Martí, J., Nenov, A., Improta, R., Garavelli, M. (2017). Resolving Ultrafast Photoinduced Deactivations in Water-Solvated Pyrimidine Nucleosides. THE JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 8(8), 1777-1783 [10.1021/acs.jpclett.7b00316].
Pepino, Ana Julieta; Segarra-Martí, Javier; Nenov, Artur; Improta, Roberto; Garavelli, Marco
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/586227
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