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Imaging Reaction Dynamics of F-(H2O) and Cl-(H2O) with CH3I

机译:CH3I的F-(H2O)和Cl-(H2O)的成像反应动力学

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摘要

The dynamics of microhydrated nucleophilic substitution reactions have been studied using crossed beam velocity map imaging experiments and quasiclassical trajectory simulations at different collision energies between 0.3 and 2.6 eV. For F-(H2O) reacting with CH3I, a small fraction of hydrated product ions I-(H2O) is observed at low collision energies. This product, as well as the dominant I-, is formed predominantly through indirect reaction mechanisms. In contrast, a much smaller indirect fraction is determined for the unsolvated reaction. At the largest studied collision energies, the solvated reaction is found to also occur via a direct rebound mechanism. The measured product angular distributions exhibit an overall good agreement with the simulated angular distributions. Besides nucleophilic substitution, also ligand exchange reactions forming F-(CH3I) and, at high collision energies, proton transfer reactions are detected. The differential scattering images reveal that the Cl-(H2O) + CH3I reaction also proceeds predominantly via indirect reaction mechanisms.
机译:已经研究了使用横梁速度映射成像实验和在不同碰撞能量的曲线轨迹模拟0.3和2.6eV之间的拟谱轨迹模拟研究了微水合亲核代替反应的动态。对于与CH3I反应的F-(H 2 O),在低碰撞能量下观察到一小部分水合产物离子I-(H2O)。该产品以及主要的I-主要通过间接反应机制形成。相反,确定用于未溶剂化反应的小得多的间接级分。在最大的研究碰撞能量下,发现溶剂化反应也通过直接回弹机制发生。测量的产品角度分布与模拟角度分布表现出整体良好的一致性。除了亲核代替,还形成了形成F-(CH3I)的配体交换反应,并且在高碰撞能量下,检测质子转移反应。差分散射图像显示Cl-(H 2 O)+ CH 3I反应也通过间接反应机制主要进行。

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