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Lone pair versus bonding pair electrons: The mechanism of electronic polarization of water in the presence of positive ions

机译:孤对与键对电子:存在正离子时水的电子极化机理

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摘要

It is commonly accepted that the water molecules in the first solvation shell of a positive ion are strongly polarized because of an elongation of the oxygen lone pair orbitals along the ion-oxygen direction and this is commonly considered the dominant effect. Recent experimental and theoretical works have instead suggested that this is not the dominant aspect and that the problem is by far more complicated. Consistent with the picture given above, here we show that, in particular, an equally important role into the polarization process is played by the bonding pair electrons located along the internal oxygen-hydrogen bond. We also provide some arguments which suggest that the main reason of such a behavior is due to the distortion of the molecular orbitals caused by the interaction between non-hydrogen-bonded water molecules in the first solvation shell of the ion.
机译:通常认为,由于氧孤对轨道沿离子-氧方向的延长,正离子的第一溶剂化壳中的水分子被强极化,这通常被认为是主要的作用。取而代之的是,最近的实验和理论研究表明,这不是主要的方面,而且问题要复杂得多。与上面给出的图片一致,在此我们显示,尤其是,沿着内部氧氢键的电子对在极化过程中起着同等重要的作用。我们还提供了一些论据,表明这种行为的主要原因是由于离子的第一溶剂化壳中非氢键结合的水分子之间的相互作用所引起的分子轨道畸变。

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