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Updated: Mar 11, 2026

The Lambda Select cII Mutation Detection System
Published on: April 26, 2018
New Insights into the State Trapping of UV-Excited Thymine
Ljiljana Stojanović1, Shuming Bai2, Jayashree Nagesh3
1Aix Marseille Univ., CNRS, ICR, Marseille, France. ljiljana.stojanovic@univ-amu.fr.
Abstract:
After UV excitation, gas phase thymine returns to a ground state in 5 to 7 ps, showing multiple time constants. There is no consensus on the assignment of these processes, with a dispute between models claiming that thymine is trapped either in the first (S₁) or in the second (S₂) excited states. In the present study, a nonadiabatic dynamics simulation of thymine is performed on the basis of ADC(2) surfaces, to understand the role of dynamic electron correlation on the deactivation pathways. The results show that trapping in S₂ is strongly reduced in comparison to previous simulations considering only non-dynamic electron correlation on CASSCF surfaces. The reason for the difference is traced back to the energetic cost for formation of a CO π bond in S₂.
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