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首页> 外文期刊>The Journal of Chemical Physics >The influence of translational and vibrational energy on the reaction of Cl with CH_3D
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The influence of translational and vibrational energy on the reaction of Cl with CH_3D

机译:平移和振动能对Cl与CH_3D反应的影响

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The reaction of Cl atoms with CH_3D proceeds either by abstraction of hydrogen to produce HCl + CH_2D or by abstraction of deuterium to produce DCl + CH_3. Using Cl atoms with different amounts of translational energy, produced by photolysis of Cl_2 with 309, 355, or 416 nm light, reveals the influence of translational energy on the relative reaction probability for the two channels. These measurements give an estimate of the energy barrier for the reaction for comparison to theory and indicate that tunneling is the dominant reaction mechanism at low collision energies. Adding two quanta of C-H stretching vibration causes the reaction to proceed readily at all collision energies. Detecting the vibrational state of the CH_2D product shows that vibrational energy initially in the surviving C-H bond appears as vibrational excitation of the product, an example of spectator behavior in the reaction. The reaction produces both stretch and stretch-bend excited products except at the lowest collision energy. A subtle variation in the reaction probability of the lowest energy rotational states with translational energy may reflect the presence of a van der Waals well in the entrance channel.
机译:Cl原子与CH_3D的反应通过提取氢生成HCl + CH_2D或通过提取氘生成DCl + CH_3进行。使用由309、355或416 nm的光对Cl_2进行光解而产生的,具有不同翻译能量的Cl原子,揭示了翻译能量对两个通道的相对反应概率的影响。这些测量结果给出了反应能垒的估计值,以便与理论进行比较,并表明隧道效应是低碰撞能时的主要反应机理。加两个量子点的C-H拉伸振动会使反应在所有碰撞能量下轻松进行。检测CH_2D产物的振动状态表明,最初存在的C-H键中的振动能作为产物的振动激发而出现,这是反应中观众行为的一个例子。除了最低的碰撞能量外,该反应同时产生拉伸和拉伸弯曲的激发产物。最低能量旋转状态与平移能量的反应概率的细微变化可能反映了范德华斯井在入口通道中的存在。

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