Max-Planck-Institut für Kohlenforschung, Kaiser-Wilhelm-Platz 1, 45470 Mülheim an der Ruhr, Germany.
J Phys Chem A. 2013 Jun 6;117(22):4574-83. doi: 10.1021/jp4028035. Epub 2013 May 23.
We report a computational study on the photochemistry of the prototypical aromatic Schiff base salicylideneaniline in the gas phase using static electronic structure calculations (TDDFT, OM2/MRCI) and surface-hopping dynamics simulations (OM2/MRCI). Upon photoexcitation of the most stable cis-enol tautomer into the bright S1 state, we find an ultrafast excited-state proton transfer that is complete within tens of femtoseconds, without any C═N double bond isomerization. The internal conversion of the resulting S1 cis-keto species is initiated by an out-of-plane motion around the C-C single bond, which guides the molecule toward a conical intersection that provides an efficient deactivation channel to the ground state. We propose that the ease of this C-C single bond rotation regulates fluorescence quenching and photocoloration in condensed-phase environments. In line with previous work, we find the S1 cis-keto conformer to be responsible for fluorescence, especially in rigid surroundings. The S0 cis-keto species is a transient photoproduct, while the stable S0 trans-keto photoproduct is responsible for photochromism. The trajectory calculations yield roughly equal amounts of the S0 cis-enol and trans-keto photoproducts. Methodologically, full-dimensional nonadiabatic dynamics simulations are found necessary to capture the preferences among competitive channels and to gain detailed mechanistic insight into Schiff base photochemistry.
我们报告了在气相中使用静态电子结构计算(TDDFT、OM2/MRCI)和表面跳跃动力学模拟(OM2/MRCI)对典型的芳香族席夫碱水杨醛苯胺的光化学的计算研究。在最稳定的顺式烯醇互变异构体被激发到明亮的 S1 态后,我们发现超快的激发态质子转移在几十飞秒内完成,没有任何 C═N 双键异构化。由此产生的 S1 顺式酮物种的内部转化是由围绕 C-C 单键的面外运动引发的,该运动将分子引导到一个锥形交叉点,为向基态的有效失活通道提供了条件。我们提出,这种 C-C 单键旋转的容易程度调节了凝聚相环境中的荧光猝灭和光致变色。与之前的工作一致,我们发现 S1 顺式酮构象负责荧光,特别是在刚性环境中。S0 顺式酮物种是瞬态光产物,而稳定的 S0 反式酮光产物则负责光致变色。轨迹计算得到了大致等量的 S0 顺式烯醇和反式酮光产物。从方法学上讲,需要进行全维非绝热动力学模拟,以捕捉竞争通道之间的偏好,并深入了解席夫碱光化学的机理。