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Dynamical and stereodynamical studies of alkaline-earth atom-molecule reactions

机译:碱土原子-分子反应的动力学和立体动力学研究

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Alkaline- earth atom molecule reactions have been extensively investigated since the early days of reaction dynamics. Though these reactions have many similarities to those of corresponding alkali atoms, as one would expect from their low ionization potential, there are important differences due to the presence of the two valence electrons in the alkaline- earth atom. This feature confers a distinct dynamical or stereodynamical behaviour whose basic description and analysis is the main objective of this article. The adopted approach is phenomenological based on the huge body of data revealed by modern crossed- beam and laser pump and probe techniques with no intention to be comprehensive but rather to put into context both authors' work. The paper starts with a resume of the experimental approaches followed by a visit to full- collision studies under gas cell, beam - gas and crossed- beam arrangements. Detailed analysis and discussion is given of the M + H-2 ( M Ca, Mg) -> MH + H reaction family whose dynamics is discussed using their Potential Energy Surfaces. In these studies care was taken to discuss the most relevant features of the molecular reaction dynamics with emphasis on the energy selectivity and on the stereodynamical ( vectorial) nature of the reaction. To this end the available data are discussed in light of topological features of the underlying potential energy surface favouring either insertion or abstraction mechanisms. Particular attention is paid to the discussion of alkaline- earth atom reactions with halogen containing molecules. In these reactions the presence of two valence electrons leads to reaction channels, as chemiluminescent or chemi-ionization reactions, which are specifically associated with the transfer of the more energetic ( inner harpooning) electron, whose dynamics or stereodynamics pattern differs from those of reaction channels associated to the transfer of the first, less energetic electron as, for example, in ion-pair reactions. A full section of the paper is dedicated to photo-induced intracluster reactions and, in particular, to the transition state dynamics of the prototype Ba center dot center dot center dot FCH3 + h nu -> BaF + CH3 reaction investigated in great detail by both nanosecond and femtosecond photo - ion and photo - electron pump and probe techniques. For this system the combination of these ultrahigh resolution techniques with isotopic labelling and ab initio calculations allowed the deciphering of its ultrafast reaction mechanism. Finally, the paper ends with some concluding remarks based on the observed propensity rules or general trends found in these alkaline- earth atom reactions.
机译:自从反应动力学开始以来,就已经对碱土原子分子反应进行了广泛的研究。尽管这些反应与相应的碱原子有许多相似之处,正如人们从其低电离势所期望的那样,但由于碱土原子中存在两个价电子,因此存在重要区别。此功能赋予了独特的动力学或立体动力学行为,其基本描述和分析是本文的主要目标。所采用的方法是现象学的,是基于现代交叉光束和激光泵浦和探测技术所揭示的大量数据,无意于全面,而是将两位作者的工作放到上下文中。本文从实验方法的简历开始,然后访问了在气室,束气和交叉束布置下的全碰撞研究。对M + H-2(M Ca,Mg)-> MH + H反应族进行了详细的分析和讨论,使用其势能面讨论了动力学。在这些研究中,我们着重讨论了分子反应动力学的最相关特征,重点是能量选择性和反应的立体动力学(矢量)性质。为此,根据潜在的势能表面的拓扑特征(有利于插入或抽象机制)讨论了可用数据。特别注意碱土原子与含卤素分子反应的讨论。在这些反应中,两个价电子的存在导致了化学发光或化学电离反应的反应通道,这些通道与更高能的(内部鱼叉)电子的转移特别相关,后者的动力学或立体动力学模式与反应通道不同。例如,在离子对反应中,它与低能的第一个电子的转移有关。论文的整个章节专门讨论光诱导的簇内反应,尤其是原型Ba中心点中心点中心点FCH3 + h nu-> BaF + CH3反应的过渡态动力学纳秒和飞秒光电泵和探针技术。对于该系统,这些超高分辨率技术与同位素标记和从头算的结合,可以破译其超快反应机理。最后,本文根据观察到的倾向规则或在这些碱土原子反应中发现的一般趋势以结论性结尾。

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