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首页> 外文期刊>International Journal of Quantum Chemistry >Electronic excitation and ionization of hydrogen peroxide-water clusters: Comparison with water clusters
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Electronic excitation and ionization of hydrogen peroxide-water clusters: Comparison with water clusters

机译:过氧化氢-水团簇的电子激发和电离:与水团簇的比较

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摘要

Electronic properties of H2O2(H2O) 1-6 and (H2O)1-7 clusters are reported. Emphasis was placed on the changes induced by the presence of hydrogen peroxide on the electronic properties of water aggregates. Theoretical results for excitation energies as well as vertical and adiabatic ionization energies are reported. Excitation energies were calculated with time-dependent density functional theory and equation-of-motion coupled cluster with single and double excitations (EOM-CCSD). A many-body energy decomposition scheme recently proposed was coupled to the EOM-CCSD method making possible an accurate prediction of the first vertical excitation energy of peroxide-water clusters. In comparison with water clusters, our results show that the presence of hydrogen peroxide in water clusters is characterized by a [1.5-1.8] eV red-shift of the first excitation energy. The first excitation is localized on the HOOH moiety, and no significant dependence of the first excitation energy on the cluster size is observed. The differences between vertical and adiabatic ionization energies for both water and hydrogen peroxide-water clusters reflect the feature that ionization leads to proton transfer and to a significant structural and electronic density reorganization.
机译:报告了H2O2(H2O)1-6和(H2O)1-7簇的电子性质。重点放在由过氧化氢的存在引起的对水聚集体电子性能的改变上。报告了激发能以及垂直和绝热电离能的理论结果。利用时变密度泛函理论和带有单和双激励的运动方程耦合簇(EOM-CCSD)计算了激励能量。最近提出的多体能量分解方案与EOM-CCSD方法相结合,使得可以准确预测过氧化物-水团簇的第一垂直激发能。与水簇相比,我们的结果表明,水簇中过氧化氢的存在是第一激发能的[1.5-1.8] eV红移。第一次激发位于HOOH部分,并且未观察到第一次激发能量对簇大小的显着依赖性。水和过氧化氢-水团簇的垂直和绝热电离能之间的差异反映了电离导致质子转移以及显着的结构和电子密度重组的特征。

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