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Negative ion formation in alkali-atom-molecule collisions [Review]

机译:碱原子-分子碰撞中的负离子形成[综述]

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Negative ion formation in alkali-atom-molecule collisions is a powerful method to study the dynamic properties of negative ions. By studying a collision with an electron donor such as an alkali atom one has access to the electron affinity of the molecule as it is manifested in the collision. The electron affinities obtained depend on the conditions of the collision and do not have to be identical to electron affinities obtained by other means. In this way adiabatic, vertical and reactive electron affinities can be discerned. Moreover if the collision energy is in the eV region one can probe the vibrational dynamics of a negative molecular ion on a 10 fs timescale. As a theoretical introduction to negative ion formation by electron transfer in atom-molecule collisions the curve crossing model and the collision dynamics of the atom-atom case are briefly reviewed. A short survey of the experimental methods used is presented. Measurements of total, differential and double-differential cross sections as a function of the collision energy and different collision partners are discussed. In atom-molecule collisions stretching of the bond of the molecular negative ion during the collision is among the most relevant consequences of the internal degrees of freedom of the molecule. The collision dynamics explored in this way not only gives insight into the properties of negative ions, but also into the dynamics of elementary processes occurring in chemical reactions. [References: 148]
机译:碱-原子-分子碰撞中的负离子形成是研究负离子动力学特性的有效方法。通过研究与电子给体(例如碱原子)的碰撞,人们可以访问分子中的电子亲和力,因为它在碰撞中表现出来。所获得的电子亲和力取决于碰撞的条件,并且不必与通过其他方式获得的电子亲和力相同。以这种方式,可以分辨出绝热,垂直和反应性电子亲和力。此外,如果碰撞能量在eV区域,则可以在10 fs的时间尺度上探测负分子离子的振动动力学。作为原子分子碰撞中电子转移形成负离子的理论介绍,简要回顾了曲线交叉模型和原子-原子情况的碰撞动力学。介绍了使用的实验方法的简短调查。讨论了作为碰撞能量和不同碰撞伙伴的函数的总,微分和双微分横截面的测量。在原子-分子碰撞中,在碰撞过程中分子负离子键的伸展是分子内部自由度最相关的结果之一。以这种方式探索的碰撞动力学不仅可以洞悉负离子的性质,还可以洞悉化学反应中发生的基本过程的动力学。 [参考:148]

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