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首页> 外文期刊>The Journal of Chemical Physics >On the intermolecular Coulombic decay of singly and doubly ionized states of water dimer
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On the intermolecular Coulombic decay of singly and doubly ionized states of water dimer

机译:水二聚体单电离和双电离态的分子间库伦衰变

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A semiquantitative study of the intermolecular Coulombic decay (ICD) of singly and doubly ionized water dimer has been carried out with the help of ab initio computed ionization spectra and potential energy curves (PECs). These PECs are particular cuts through the (H_2 O)_2, (H _2 O) 2+, and (H_2 O) 2 ++ hypersurfaces along the distance between the two oxygen atoms. A comparison with the recently published experimental data for the ICD in singly ionized water dimers [T. Jahnke, H. Sann, T. Havermeier, Nat. Phys. 6, 139 (2010)] and in large water clusters [M. Mucke, M. Braune, S. Barth, Nat. Phys. 6, 143 (2010)] shows that such a simplified description in which the internal degrees of freedom of the water molecules are frozen gives surprisingly useful results. Other possible decay channels of the singly ionized water dimer are also investigated and the influence of the H-atom participating in the hydrogen bond on the spectra of the proton-donor and proton-acceptor molecules in the dimer is discussed. Importantly, the decay processes of one-site dicationic states of water dimer are discussed and an estimate of the ICD-electron spectra is made. More than 33% of the dications produced by Auger decay are found to undergo ICD. The qualitative results show that the ICD following Auger decay in water is also expected to be an additional source of low-energy electrons proven to be extremely important for causing damages to living tissues.
机译:借助从头算出的电离光谱和势能曲线(PEC),对单电离和双电离的水二聚体的分子间库仑衰减(ICD)进行了半定量研究。这些PEC沿着两个氧原子之间的距离穿过(H_2 O)_2,(H _2 O)2+和(H_2 O)2 ++超表面。与最近发布的ICD单离子水二聚体实验数据的比较[T. Jahnke,H.Sann,T.Havermeier,Nat。物理6,139(2010)]和大型水团中[M.莫克(Mucke),布劳恩(M.物理6,6,143(2010)]显示了这种简化的描述,其中冻结了水分子的内部自由度,给出了令人惊讶的有用结果。还研究了单电离水二聚体的其他可能衰变通道,并讨论了氢原子中参与氢键的原子对二聚体中质子供体和质子受体分子光谱的影响。重要的是,讨论了水二聚体的一处位置状态的衰减过程,并对ICD电子光谱进行了估计。发现俄歇衰变产生的药物中有33%以上经历了ICD。定性结果表明,在水中俄歇衰变之后的ICD也有望成为低能量电子的另一来源,事实证明,低能量电子对于造成活体组织损害极为重要。

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