论文标题
1,3-环己二烯的光化学环开反应:反应态的复杂动力学演变
The photochemical ring-opening reaction of 1,3-cyclohexadiene: complex dynamical evolution of the reactive state
论文作者
论文摘要
1,3-环己二烯(CHD)至1,3,5-己二烯(HT)的光化学诱导的环室开环异构反应是周环反应的教科书示例,并且已经通过先进的光谱技术进行了充分的研究。异构化途径的普遍接受的描述始于对最低的亮态状态的价激发,然后通过锥形相交的通道到达黑暗的双重激发态,最后在循环分子的基态或实际环环反应的基态返回之间进行分支。传统上认为,黑暗反应状态对应于弗朗克 - 康登几何形状的第二个冠心病状态。在这里,在共同的实验和计算工作中,我们证明了激发 - 引发过程的演变比通常所描述的要复杂得多。特别是,我们表明,最初沿反应路径的能量平稳地降低能量在环反应中起关键作用。我们工作的概念基础是,这里要考虑的动力学是由绝世状态确定的,其种群与观察到的光电子信号密切相关。
The photochemically induced ring-opening isomerization reaction of 1,3-cyclohexadiene (CHD) to 1,3,5-hexatriene (HT) is a textbook example of a pericyclic reaction, and has been amply investigated with advanced spectroscopic techniques. The generally accepted description of the isomerization pathway starts with a valence excitation to the lowest-lying bright state, followed by a passage through a conical intersection to a dark doubly excited state, and finally a branching between either the return to the ground state of the cyclic molecule or the actual ring-opening reaction leading to the open-chain isomer. It was traditionally assumed that the dark reactive state corresponds to the second excited state of CHD at the Franck-Condon geometry. Here in a joint experimental and computational effort we demonstrate that the evolution of the excitation-deexcitation process is much more complex than usually described. In particular, we show that an initially high-lying electronic state smoothly decreasing in energy along the reaction path plays a key role in the ring-opening reaction. The conceptual basis of our work is that the dynamics to consider here is determined by diabatic states, whose populations are the ones closely related to the observed photoelectron signal.