Guo Hua, Liu Kopin
Department of Chemistry and Chemical Biology , University of New Mexico , Albuquerque , New Mexico 87131 , USA . Email:
Institute of Atomic and Molecular Sciences , Academia Sinica , Taipei 10617 , Taiwan . Email:
Chem Sci. 2016 Jul 1;7(7):3992-4003. doi: 10.1039/c6sc01066k. Epub 2016 Apr 13.
It has been long established that the transition state for an activated reaction controls the overall reactivity, serving as the bottleneck for reaction flux. However, the role of the transition state in regulating quantum state resolved reactivity has only been addressed more recently, thanks to advances in both experimental and theoretical techniques. In this perspective, we discuss some recent advances in understanding mode-specific reaction dynamics in bimolecular reactions, mainly focusing on the X + HO/CH (X = H, F, Cl, and O(P)) systems, extensively studied in our groups. These advances shed valuable light on the importance of the transition state in mode-specific and steric dynamics of these prototypical reactions. It is shown that many mode-specific phenomena can be understood in terms of a transition-state based model, which assumes in the sudden limit that the ability of a reactant mode for promoting the reaction stems from its coupling with the reaction coordinate at the transition state. Yet, in some cases the long-range anisotropic interactions in the entrance (or exit) valley, which govern how the trajectories reach (or leave) the transition state, also come into play, thus modifying the reactive outcomes.
长期以来,人们已经确定,活化反应的过渡态控制着整体反应活性,是反应通量的瓶颈。然而,由于实验和理论技术的进步,过渡态在调节量子态分辨反应活性方面的作用直到最近才得到探讨。从这个角度出发,我们讨论了在理解双分子反应中模式特异性反应动力学方面的一些最新进展,主要聚焦于我们团队广泛研究的X + HO/CH(X = H、F、Cl和O(P))体系。这些进展为过渡态在这些典型反应的模式特异性和空间动力学中的重要性提供了宝贵的见解。结果表明,许多模式特异性现象可以用基于过渡态的模型来理解,该模型在突然近似的情况下假设反应物模式促进反应的能力源于其在过渡态与反应坐标的耦合。然而,在某些情况下,入口(或出口)谷中的长程各向异性相互作用,即控制轨迹如何到达(或离开)过渡态的相互作用,也会起作用,从而改变反应结果。