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OH_3~-and O_2H_5~-double Rydberg anions:Predictions and comparisons with NH_4~-and N_2H_7~-

机译:OH_3〜-和O_2H_5〜-双Rydberg阴离子:与NH_4〜-和N_2H_7〜-的预测和比较

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摘要

A low barrier in the reaction pathway between the double Rydberg isomer of OH3 and a hydride-water complex indicates that the former species is more difficult to isolate and characterize through anion photoelectron spectroscopy than the well known double Rydberg anion (DRA),tetrahedral NH4.Electron propagator calculations of vertical electron detachment energies (VEDEs) and isosurface plots of the electron localization function disclose that the transition state's electronic structure more closely resembles that of the DRA than that of the hydride-water complex.Possible stabilization of the OH_3~-DRA through hydrogen bonding or ion-dipole interactions is examined through calculations on O2H_5~-species.Three O2H_5~-minima with H~-(H2O)_2,hydrogen-bridged,and DRA-molecule structures resemble previously discovered N_2H_~-7 species and have well separated VEDEs that may be observable in anion photoelectron spectra.
机译:OH3的双重Rydberg异构体与氢化物-水络合物之间的反应路径中的低势垒表明,与众所周知的双重Rydberg阴离子(DRA),四面体NH4相比,前者更难以通过阴离子光电子能谱进行分离和表征。垂直电子离解能(VEDE)的电子传播计算和电子局部化函数的等值面图显示,过渡态的电子结构比DRA的氢化物-水络合物更类似于DRA.OH_3〜-DRA的可能稳定性通过对O2H_5〜-物种的计算,研究了通过氢键或离子-偶极相互作用产生的氢。具有H〜-(H2O)_2,氢桥键和DRA分子结构的三个O2H_5〜-minima类似于以前发现的N_2H_〜-7物种,具有良好分离的VEDE,可在阴离子光电子光谱中观察到。

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