INFIQC-Dpto. de Fisicoquímica, Fac. de Cs. Químicas, Universidad Nacional de Córdoba, Ciudad Universitaria, Córdoba 5000, Argentina.
J Chem Phys. 2010 Sep 28;133(12):124313. doi: 10.1063/1.3480396.
Lifetimes of the first electronic excited state (S(1)) of fluorine and methyl (o-, m-, and p-) substituted phenols and their complexes with one ammonia molecule have been measured for the 0(0) transition and for the intermolecular stretching σ(1) levels in complexes using picosecond pump-probe spectroscopy. Excitation energies to the S(1) (ππ*) and S(2) (πσ*) states are obtained by quantum chemical calculations at the MP2 and CC2 level using the aug-cc-pVDZ basis set for the ground-state and the S(1) optimized geometries. The observed lifetimes and the energy gaps between the ππ* and πσ* states show a good correlation, the lifetime being shorter for a smaller energy gap. This propensity suggests that the major dynamics in the excited state concerns an excited state hydrogen detachment or transfer (ESHD/T) promoted directly by a S(1)/S(2) conical intersection, rather than via internal conversion to the ground-state. A specific shortening of lifetime is found in the o-fluorophenol-ammonia complex and explained in terms of the vibronic coupling between the ππ* and πσ* states occurring through the out-of-plane distortion of the C-F bond.
已通过皮秒泵浦探测光谱法测量了氟和甲基(邻位、间位和对位)取代苯酚及其与一个氨分子形成的配合物的第一电子激发态(S(1))的寿命,用于 0(0)跃迁和分子间伸缩 σ(1)能级。在 MP2 和 CC2 水平下,使用 aug-cc-pVDZ 基组对基态和 S(1)优化几何形状进行量子化学计算,得到 S(1)(ππ*)和 S(2)(πσ*)态的激发能。观察到的寿命和 ππ与 πσ态之间的能隙之间存在良好的相关性,较小的能隙导致较短的寿命。这种倾向表明,在激发态中主要的动力学涉及直接由 S(1)/S(2) 锥形交叉促进的激发态氢脱离或转移(ESHD/T),而不是通过内部转换到基态。在邻氟苯酚-氨复合物中发现了寿命的特定缩短,并根据通过 C-F 键的面外扭曲发生的 ππ和 πσ态之间的振子耦合来解释。