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ELECTRONIC STRUCTURE AND REACTION DYNAMICS OF MOLECULAR AND CLUSTER ANIONS VIA PHOTOELECTRON IMAGING

机译:分子和团簇电子的光电子成像及电子动力学

摘要

The electronic structure and reaction dynamics of molecular and cluster anions in the gas phase has been investigated using negative ion velocity-map imaging photoelectron spectrometer. Photoelectron images provide important information about both energies and symmetries of the parent anion orbitals from which photoelectron originates. The symmetry and the ordering of several low-lying electronic states of neutral nitromethane (X¹A′, a³A″, b³A″, and A¹A″) are assigned based on a group theoretical analysis of the transitions angular distributions and the results of DFT calculations. The through-bond electronic coherence in meta- and para-dinitrobenzene anions is explored by recording a series of photoelectron images in 532-266 nm wavelength range. Photoelectron angular distributions for both isomers exhibit oscillatory behavior characteristic of the quantum interference effect, suggesting that dinitrobenzene anions retain their high symmetry electronic structures in the gas phase. Photoelectron imaging experiments on [O(N₂O)(n)]⁻, n =0–9 at 266 and 355 nm provide clear evidence of a switch from the cova)lent NNO₂⁻ cluster core to the atomic O⁻ core occurring between n = 3 and 4. The experimental results and theoretical modeling indicate that despite the greater stability of NNO₂⁻ relative to the O⁻ + N₂O⁻ dissociation limit, an O⁻ cluster core becomes energetically favored over NNO₂⁻ for n > 3, due to the more efficient solvation of the atomic anion. The photodissociation dynamics of I₂⁻ and IBr⁻ anions on the respective A' excited-state anion potentials is effectively unraveled in 780 nm pump - 390 nm probe time-resolve experiments. The time-dependent photoelectron spectra and classical trajectory calculations of the IBr⁻ dissociation provide the first rigorous dynamical test of the recently calculated A′ potential for this system. The photoelectron anisotropy cyclic variation observed in photodissociation of I₂⁻ is interpreted in the context of dual-center quantum interference model. The 390 nm pump – 390 nm probe experimental data reveal fast (≤100 fs) and delayed (~ 700 fs) appearance of the I⁻ channel in the photodissociation of I₂Cl⁻ and BrICl⁻ anions respectively. The difference in the reaction time-scales is attributed to the distinct dissociation pathways available for the anions to form I⁻ product.
机译:使用负离子速度图成像光电子能谱仪研究了气相中分子和簇状阴离子的电子结构和反应动力学。光电子图像提供有关光电子起源的母体阴离子轨道的能量和对称性的重要信息。基于过渡角分布的群理论分析和DFT计算的结果,分配了中性硝基甲烷的几个低电子态的对称性和有序性(X¹A',a³A“,b³A”和A¹A“)。通过在532-266 nm波长范围内记录一系列光电子图像,探索了间二硝基和对二硝基苯阴离子中的键间电子相干性。两种异构体的光电子角分布均表现出量子干涉效应的振荡行为特征,这表明二硝基苯阴离子在气相中保持了其高对称性的电子结构。在[O(N 2 O)(n)] 3上进行光电子成像实验,在266和355 nm处n = 0–9,提供了明显的证据,表明在n =参照图3和图3和4。实验结果和理论模型表明,尽管NNO 2 +相对于O + + N 2 O 3的解离极限具有更大的稳定性,但由于n> 3,O 3团簇核在能量上比NNO 2 +更具能量优势。高效的原子阴离子溶剂化。在780nm泵浦-390nm探针时间分辨实验中,有效解开了I 2+和IBr +阴离子在各自的A'激发态阴离子电位上的光解离动力学。随时间变化的光电子能谱和IBrject离解的经典轨迹计算为该系统最近计算出的A'势提供了首次严格的动力学测试。在双中心量子干涉模型的背景下解释了在I 2+光解离中观察到的光电子各向异性循环变化。 390 nm泵浦-390 nm探针实验数据表明,分别在I 2 Cl 3和BrICl 3阴离子的光解中,I 3通道快速出现(≤100fs)和延迟出现(〜700 fs)。反应时间尺度的差异归因于阴离子可用于形成I +产物的不同解离途径。

著录项

  • 作者

    Pichugin Kostyantyn;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 EN
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