Craven Galen T, Junginger Andrej, Hernandez Rigoberto
Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Institut für Theoretische Physik 1, Universität Stuttgart, 70550 Stuttgart, Germany.
Phys Rev E. 2017 Aug;96(2-1):022222. doi: 10.1103/PhysRevE.96.022222. Epub 2017 Aug 31.
The persistence of a transition state structure in systems driven by time-dependent environments allows the application of modern reaction rate theories to solution-phase and nonequilibrium chemical reactions. However, identifying this structure is problematic in driven systems and has been limited by theories built on series expansion about a saddle point. Recently, it has been shown that to obtain formally exact rates for reactions in thermal environments, a transition state trajectory must be constructed. Here, using optimized Lagrangian descriptors [G. T. Craven and R. Hernandez, Phys. Rev. Lett. 115, 148301 (2015)PRLTAO0031-900710.1103/PhysRevLett.115.148301], we obtain this so-called distinguished trajectory and the associated moving reaction manifolds on model energy surfaces subject to various driving and dissipative conditions. In particular, we demonstrate that this is exact for harmonic barriers in one dimension and this verification gives impetus to the application of Lagrangian descriptor-based methods in diverse classes of chemical reactions. The development of these objects is paramount in the theory of reaction dynamics as the transition state structure and its underlying network of manifolds directly dictate reactivity and selectivity.
在由随时间变化的环境驱动的系统中,过渡态结构的持续性使得现代反应速率理论能够应用于溶液相和非平衡化学反应。然而,在受驱动的系统中识别这种结构存在问题,并且一直受到基于鞍点级数展开的理论的限制。最近,研究表明,为了获得热环境中反应的形式上精确的速率,必须构建一条过渡态轨迹。在此,我们使用优化的拉格朗日描述符[G. T. 克雷文和R. 埃尔南德斯,《物理评论快报》115, 148301 (2015)PRLTAO0031 - 900710.1103/PhysRevLett.115.148301],在受到各种驱动和耗散条件的模型能量表面上获得了这条所谓的特征轨迹以及相关的移动反应流形。特别地,我们证明了对于一维的谐振势垒这是精确的,并且这种验证推动了基于拉格朗日描述符的方法在各类化学反应中的应用。在反应动力学理论中,这些对象的发展至关重要,因为过渡态结构及其潜在的流形网络直接决定了反应活性和选择性。