论文标题
将动力学重新培训动力学到实时成像的电子反应的最小值
Rehybridization dynamics into the pericyclic minimum of an electrcyclic reaction imaged in real-time
论文作者
论文摘要
电环反应的特征是通过循环结构的σ和π键进行了一致的形成和裂解。该结构被称为热反应的周期性过渡态,在激发态中用于光化学反应的周环状最小值。但是,周期几何形状的结构尚未通过实验观察到。我们使用超快电子衍射和激发态波袋模拟的组合,通过在分子α-替烯中的光化学电循环环反应的最小值来对结构动力学进行图像结构动力学。到达最小值的结构运动以两个碳原子的复杂化为主导,这是从两个转化到三个共轭π键所必需的。 σ键解离,很大程度上发生在内部最小值到电子基态的内部转化后发生。这些发现通常可以转移到电循环反应。
Electrocyclic reactions are characterized by the concerted formation and cleavage of both σ and π bonds through a cyclic structure. This structure is known as a pericyclic transition state for thermal reactions and a pericyclic minimum in the excited state for photochemical reactions. However, the structure of the pericyclic geometry has yet to be observed experimentally. We use a combination of ultrafast electron diffraction and excited state wavepacket simulations to image structural dynamics through the pericyclic minimum of a photochemical electrocyclic ring-opening reaction in the molecule α-terpinene. The structural motion into the pericyclic minimum is dominated by rehybridization of two carbon atoms, which is required for the transformation from two to three conjugated π bonds. The σ bond dissociation largely happens after internal conversion from the pericyclic minimum to the electronic ground state. These findings may be transferrable to electrocyclic reactions in general.