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Reaction Coordinates and the Transition-Vector Approximation to the IRC

机译:反应坐标与IRC的跃迁矢量近似

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The appearance of a reaction profile or potential energy surface (PES) associated with the reaction path (defined as the path of steepest descent from the saddle point) depends on the choice of reaction coordinate onto which the intrinsic reaction coordinate is projected. This provides one with the freedom, but also the problem, of choosing the optimal perspective (i.e., the optimal reaction coordinate) for revealing what is essential for understanding the reaction. Here, we address this issue by analyzing a number of different reaction coordinates for the same set of model reactions, namely, prototypical oxidative addition reactions of C-X bonds to palladium. We show how different choices affect the appearance of the PES, and we discuss which qualities make a particular reaction coordinate most suitable for comparing and analyzing the reactions. Furthermore, we show how the transition vector (i.e., the normal mode associated with a negative force constant that leads from the saddle point to the steepest descent paths) can serve as a useful and computationally much more efficient approximation (designated TV-IRC) for full IRC computations, in the decisive region around the transition state.
机译:与反应路径(定义为从鞍点开始最陡下降的路径)相关的反应曲线或势能面(PES)的外观取决于将本征反应坐标投影到其上的反应坐标的选择。这给人提供了选择最佳视角(即最佳反应坐标)以揭示理解反应所必需的自由的问题。在这里,我们通过分析同一组模型反应(即C-X键与钯的原型氧化加成反应)的许多不同反应坐标来解决此问题。我们展示了不同的选择如何影响PES的外观,并讨论了哪些质量使特定的反应坐标最适合比较和分析反应。此外,我们展示了过渡矢量(即与从鞍点到最陡的下降路径的负力常数相关的法向模式)如何可以用作有用且计算效率更高的近似值(称为TV-IRC)在过渡状态周围的决定性区域中进行完整的IRC计算。

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