Canuel Clélia, Elhanine Mohamed, Mons Michel, Piuzzi François, Tardivel Benjamin, Dimicoli Iliana
Laboratoire Francis Perrin URA 2453 CEA-CNRS, CEA Saclay, Bat. 522, 91191, Gif-sur-Yvette Cedex, France.
Phys Chem Chem Phys. 2006 Sep 14;8(34):3978-87. doi: 10.1039/b606437j. Epub 2006 Jul 17.
The excited state dynamics of the purine base 9-methyladenine (9Me-Ade) has been investigated by time- and energy-resolved photoelectron imaging spectroscopy and mass-selected ion spectroscopy, in both vacuum and water-cluster environments. The specific probe processes used, namely a careful monitoring of time-resolved photoelectron energy distributions and of photoion fragmentation, together with the excellent temporal resolution achieved, enable us to derive additional information on the nature of the excited states (pipi*, npi*, pisigma*, triplet) involved in the electronic relaxation of adenine. The two-step pathway we propose to account for the double exponential decay observed agrees well with recent theoretical calculations. The near-UV photophysics of 9Me-Ade is dominated by the direct excitation of the pipi* ((1)L(b)) state (lifetime of 100 fs), followed by internal conversion to the npi* state (lifetime in the ps range) via conical intersection. No evidence for the involvement of a pisigma* or a triplet state was found. 9Me-Ade-(H(2)O)(n) clusters have been studied, focusing on the fragmentation of these species after the probe process. A careful analysis of the fragments allowed us to provide evidence for a double exponential decay profile for the hydrates. The very weak second component observed, however, led us to conclude that the photophysics were very different compared with the isolated base, assigned to a competition between (i) a direct one-step decay of the initially excited state (pipi* L(a) and/or L(b), stabilised by hydration) to the ground state and (ii) a modified two-step decay scheme, qualitatively comparable to that occurring in the isolated molecule.
通过时间分辨和能量分辨光电子成像光谱以及质量选择离子光谱,在真空和水团簇环境中研究了嘌呤碱9-甲基腺嘌呤(9Me-Ade)的激发态动力学。所使用的特定探测过程,即仔细监测时间分辨光电子能量分布和光离子碎片,以及所实现的出色时间分辨率,使我们能够获得有关腺嘌呤电子弛豫过程中涉及的激发态(ππ*、nπ*、πσ*、三重态)性质的额外信息。我们提出的解释所观察到的双指数衰减的两步途径与最近的理论计算结果非常吻合。9Me-Ade的近紫外光物理过程主要由ππ*((1)L(b))态的直接激发(寿命为100 fs)主导,随后通过锥形交叉内转换为nπ态(寿命在皮秒范围内)。未发现有证据表明涉及πσ态或三重态。对9Me-Ade-(H₂O)ₙ团簇进行了研究,重点关注这些物种在探测过程后的碎片化情况。对碎片的仔细分析使我们能够为水合物提供双指数衰减轮廓的证据。然而,观察到的非常微弱的第二成分使我们得出结论,其光物理过程与孤立碱基相比有很大不同,这归因于(i)初始激发态(ππ* L(a)和/或L(b),通过水合作用稳定)直接一步衰减到基态与(ii)一种经过修改的两步衰减方案之间的竞争,定性上与孤立分子中发生的情况相当。