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Theoretical evidence of barrier-free proton transfer in 7-azaindole-water cluster anions

机译:7-氮杂吲哚-水团簇阴离子中无障碍质子转移的理论证据

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Water clusters of 7-azaindole (7AI) and its radical anion with up to three water molecules have been investigated by B3LYP and MP2 methods. While the adiabatic electron affinities (AEAs) of 7AI(H_2O)_(n=0,1) and the most stable configuration of 7AI(H_2O)_2 were calculated to be negative, the AEAs of 7AI(H_2O)_3 were found to be positive, consistent with the experimental observation that the cluster anions of 7AI-(H_2O)_n start to appear continuously in mass spectra when n≥3. However, some high-energy configurations of 7AI(H_2O)_2 were found to have potential for capturing excess electrons and forming stable anions. The B3LYP approach was shown to systematically overestimate the AEA due to its insufficient description of buckling of conjugated ring induced by electron attachment. The computational results show that the activation energy of proton transfer in 7AI~-(H_2)O_n decreases as the number of water molecule increases. For n=3, electron attachment was found to induce a barrier-free proton transfer from water to 7AI~-, resulting in the formation of a neutral radical of protonated 7AI solvated by a water cluster of hydroxyl anion, OH~-(H_2O)_2. The protonated structures were found to be lower in energy than the fully tautomerized structures where the tautomeric 7AI radical anion is solvated by a neutral water cluster. In addition, the tautomeric structures were found to be kinetically unstable with respect to the reverse transformation to the protonated structures. These results indicate that the protonated configuration of 7AI~-(H_2O)_3 is the major species detected in molecular beam experiments. This conclusion was further confirmed by the calculations of vertical detachment energies of cluster anions. The van der Waals structures of 7AI~-(H_2O)_3, in which the water molecules locate over the 7AI conjugated ring and point their O-H bonds toward the π-electron cloud, were explored as well. Comparison of the protonation energies for DNA base anions and 7AI anion suggests that analogous proton-transfer reactions might occur in the water clusters of DNA base anions with only few water molecules.
机译:通过B3LYP和MP2方法研究了7-氮杂吲哚(7AI)及其自由基阴离子与多达三个水分子的水团簇。计算得出7AI(H_2O)_(n = 0,1)的绝热电子亲和力(AEA)和最稳定的7AI(H_2O)_2构型为负,但发现7AI(H_2O)_3的AEA为阳性结果与实验观察结果一致,即当n≥3时7AI-(H_2O)_n的簇状阴离子开始在质谱中连续出现。然而,发现7AI(H_2O)_2的一些高能构型具有捕获多余电子并形成稳定阴离子的潜力。由于对电子附连引起的共轭环的屈曲描述不足,B3LYP方法显示出系统地高估了AEA。计算结果表明,随着水分子数量的增加,7AI〜-(H_2)O_n中质子转移的活化能降低。对于n = 3,发现电子附着可诱导质子从水向7AI〜-的无障碍转移,从而导致被羟基阴离子OH〜-(H_2O)的水簇溶剂化的质子化7AI的中性基团的形成_2。发现质子化的结构的能量低于完全互变异构的结构,其中互变异构体7AI自由基阴离子被中性水簇溶剂化。另外,发现相对于向质子化结构的反向转化,互变异构结构在动力学上是不稳定的。这些结果表明7AI〜-(H_2O)_3的质子化构型是分子束实验中检测到的主要物种。计算结果进一步证实了簇状阴离子的垂直脱离能。还研究了7AI〜-(H_2O)_3的范德华结构,其中水分子位于7AI共轭环上并将其O-H键指向π电子云。比较DNA碱性阴离子和7AI阴离子的质子能,表明类似的质子转移反应可能发生在只有少量水分子的DNA碱性阴离子的水簇中。

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