Institute of Photonics & Quantum Sciences, Heriot-Watt University, Edinburgh EH14 4AS, United Kingdom.
J Chem Phys. 2012 Nov 14;137(18):184304. doi: 10.1063/1.4765104.
Time-resolved photoelectron imaging was used to investigate the dynamical evolution of the initially prepared S(1) (ππ*) excited state of phenol (hydroxybenzene), catechol (1,2-dihydroxybenzene), resorcinol (1,3-dihydroxybenzene), and hydroquinone (1,4-dihydroxybenzene) following excitation at 267 nm. Our analysis was supported by ab initio calculations at the coupled-cluster and CASSCF levels of theory. In all cases, we observe rapid (<1 ps) intramolecular vibrational redistribution on the S(1) potential surface. In catechol, the overall S(1) state lifetime was observed to be 12.1 ps, which is 1-2 orders of magnitude shorter than in the other three molecules studied. This may be attributed to differences in the H atom tunnelling rate under the barrier formed by a conical intersection between the S(1) state and the close lying S(2) (πσ*) state, which is dissociative along the O-H stretching coordinate. Further evidence of this S(1)/S(2) interaction is also seen in the time-dependent anisotropy of the photoelectron angular distributions we have observed. Our data analysis was assisted by a matrix inversion method for processing photoelectron images that is significantly faster than most other previously reported approaches and is extremely quick and easy to implement.
利用时间分辨光电子成像技术,研究了在 267nm 激发下,苯酚(羟基苯)、邻苯二酚(1,2-二羟基苯)、间苯二酚(1,3-二羟基苯)和对苯二酚(1,4-二羟基苯)的 S1(ππ*)激发态初始制备后的动力学演变。我们的分析得到了从头算计算在耦合簇和 CASSCF 理论水平上的支持。在所有情况下,我们都观察到 S1 势能表面上快速(<1ps)的分子内振动再分配。在邻苯二酚中,观察到总的 S1 态寿命为 12.1ps,这比研究的其他三个分子短 1-2 个数量级。这可能归因于在 S1 态和紧邻的 S2(πσ*)态之间的锥形交叉处形成的势垒下 H 原子隧穿率的差异,该交叉沿 O-H 伸缩坐标是离解的。我们观察到的光电子角分布的时间相关各向异性也进一步证明了这种 S1/S2 相互作用。我们的数据分析得到了一种用于处理光电子图像的矩阵反演方法的辅助,该方法比大多数以前报道的方法快得多,并且非常快速和易于实现。