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Solvent effects on guanidinium-anion interactions and the problem of guanidinium Y-aromaticity

机译:溶剂对胍-阴离子相互作用的影响以及胍Y-芳族问题

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We have calculated the complexes formed by guanidine/guanidinium and HCl/Cl~-, HNO_3/NO_3~- and H_2SO_4/HSO_4~- both in the gas and aqueous Polarizable Continuum Model (PCM) phase to understand the effect that solvation has on their interaction energies. In the gas phase, the cation-anion complexes are much more stable than the rest; however, when PCM-water is considered, this energetic difference is not as large due to the extra stabilization that the ions suffer when in aqueous solution. All the complexes were analyzed in terms of their AIM and NBO properties. In all cases, water solvation seems to "dampen" those properties observed in the gas phase. The values of Nucleus Independent Chemical Shift (NICS)(1) and NICS(2) indicate a huge influence of the proximity of the carbon atom for short distances; thus, the 3D NICS values on the van der Waal isosurfaces have been used to evaluate the possible Y-aromaticity of the guanidinium system. The isosurface in this system is more similar to cyclohexane than to benzene as indication of poor aromaticity.
机译:我们计算了胍/胍和HCl / Cl〜-,HNO_3 / NO_3〜-和H_2SO_4 / HSO_4〜-在气相和水可极化连续谱模型(PCM)相中形成的配合物,以了解溶剂化对其的影响相互作用能。在气相中,阳离子-阴离子配合物比其余的稳定得多。但是,当考虑PCM水时,由于离子在水溶液中时具有额外的稳定性,因此这种能量差异并不大。分析了所有配合物的AIM和NBO性质。在所有情况下,水溶剂化似乎都“削弱”了气相中观察到的那些特性。核独立化学位移(NICS)(1)和NICS(2)的值表明,碳原子在短距离内的邻近程度影响很大;因此,范德华等值面上的3D NICS值已用于评估胍系统的可能的Y-芳构性。该系统中的等值面更类似于环己烷,而不是苯,表明芳香性差。

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