Institute of Chemical Sciences, Heriot-Watt University, Edinburgh, UK.
Departamento de Química Física Aplicada, Facultad de Ciencias, Universidad Autónoma de Madrid, Madrid, Spain.
Nat Chem. 2018 Nov;10(11):1148-1153. doi: 10.1038/s41557-018-0121-9. Epub 2018 Aug 27.
Stereodynamic descriptions of molecular collisions concern the angular correlations that exist between vector properties of the motion of the participating species, including their velocities and rotational angular momenta. Measurements of vector correlations provide a unique view of the forces acting during collisions, and are a stringent test of electronic-structure calculations of molecular interactions. Here, we present direct measurement of the four-vector correlation between initial and final relative velocities and rotational angular momenta in a molecular collision. This property, which quantifies the extent to which a molecule retains a memory of its initial sense of rotation, or handedness, as a function of scattering angle, yields insight into the dynamics of a molecular collision. We report non-intuitive changes in the handedness for specific states and scattering angles, reproduced by classical and quantum scattering calculations. Comparison to calculations on different ab initio potential energy surfaces demonstrates this measurement's exquisite sensitivity to the underlying intermolecular forces.
分子碰撞的立体动力学描述涉及到参与运动的物种的运动矢量性质之间存在的角关联,包括它们的速度和角动量。矢量关联的测量提供了对碰撞过程中作用力的独特观察,并对分子相互作用的电子结构计算构成了严格的检验。在这里,我们直接测量了分子碰撞中初始和最终相对速度与角动量之间的四矢量关联。这个性质定量地描述了分子在散射角函数中保留其初始旋转方向或手性的程度,为分子碰撞动力学提供了深入的了解。我们报告了特定状态和散射角下的手性的非直觉变化,这些变化可以通过经典和量子散射计算来重现。与不同从头算势能表面上的计算进行比较表明,这种测量对手间相互作用力具有极高的敏感性。