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Dissociation of the Phenylarsane Molecular Ion: A Theoretical Study

机译:苯基ar烷分子离子的解离:理论研究。

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The potential energy surfaces (PESs) for the primary and secondary dissociations of the phenylarsane molecular ion (la) were determined from the quantum chemical calculations using the G3(MP2)//B3LYP method. Several pathways for the loss of H· were determined and occurred though rearrangements as well as through direct bond cleavages. The kinetic analysis based on the PES for the primary dissociation showed that the loss of H2 was more favored than the loss of H· but the H· loss competed with the H2 loss at high energies. The bicyclic isomer, 7-arsa-norcaradiene radical cation, was formed through the 1,2 shift of an a-H of la and played an important role as an intermediate for the further rearrangements in the loss of H· and the losses of As· and AsH. The reaction pathways for the formation of the major products in the secondary dissociations of [M-H]~+ and [M-H2]~(+·) were examined. The theoretical prediction explained the previous experimental results for the dissociation at high energies but not the dissociation at low energies.
机译:使用G3(MP2)// B3LYP方法从量子化学计算中确定了苯ar烷分子离子(la)的一级和二级解离的势能面(PESs)。通过重排以及通过直接键裂解,确定并发生了几种H·损失的途径。基于PES进行初次离解的动力学分析表明,H2的损失比H·的损失更为有利,但在高能下H·的损失与H2的损失竞争。双环异构体7-arsa-norcaradiene自由基阳离子是通过la的aH的1,2转移而形成的,并且作为进一步重排H·和As·和灰。研究了[M-H]〜+和[M-H2]〜(+·)二级解离中主要产物形成的反应途径。理论预测解释了先前关于高能解离而不是低能解离的实验结果。

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