4.6 Article

Mechanisms of Ultrafast Excited-State Deactivation in Adenosine

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JOURNAL OF PHYSICAL CHEMISTRY A
卷 118, 期 1, 页码 122-127

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AMER CHEMICAL SOC
DOI: 10.1021/jp410121h

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  1. International Max Planck Research School of Advanced Photon Science (IMPRS-APS)
  2. TUM Graduate School
  3. Deutsche Forschungsgemeinschaft (DFG)
  4. DFG Cluster of Excellence Munich-Centre for Advanced Photonics

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Recently, resonant two-photon ionization experiments on isolated adenine and adenosine suggested that adenosine exhibits a significantly shorter excited-state lifetime than adenine, which indicates the existence of an efficient excited-state deactivation mechanism in adenosine that is not existent in adenine. We report on ab initio investigations on a syn and an anti conformer of adenosine exhibiting an intramolecular OH...N3 hydrogen bond. For both conformers, we have identified the existence of a barrierless excited-state deactivation mechanism cs that involves the forward backward transfer of a proton along the intramolecular hydrogen bond and ultrafast radiationless deactivation through conical intersections. The S-1/S-0 conical intersection associated with the proton-transfer process is lower in energy than the known S-1/S-0 conical intersections associated with the excited-state deactivation processes inherent to the adenine moiety. These results support the conjecture that the photochemistry of hydrogen bonds plays a decisive role for the photostability of the molecular building blocks of RNA and DNA, which have been selected at the earliest stages of the chemical evolution of life.

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