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Solvation of excess electrons trapped in charge pockets on molecular surfaces

机译:溶解在分子表面电荷袋中的过量电子的溶剂化

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This work considers the ability of hydrogen fluoride (HF) to solvate excess electrons located on cyclic hydrocarbon surfaces. The principle applied involves the formation of systems in which excess electrons can be stabilized not only on concentrated molecular surface charge pockets but also by HF. Recent studies have shown that OH groups can form stable hydrogen-bonded networks on one side of a hydrocarbon surface (i.e. cyclohexane sheets), at the same time, the hydrogen atoms on the opposite side of this surface form a pocket of positive charge can attract the excess electron. This density can be further stabilized by the addition of an HF molecule that can form an 'anion with an internally solvated electron' (AISE) state. These systems are shown to be stable with respect to vertical electron detachment (VDE).
机译:这项工作考虑了氟化氢(HF)溶解位于环状烃表面的过量电子的能力。所应用的原理涉及形成系统,其中过量的电子不仅可以在集中的分子表面电荷袋上而且可以通过HF稳定。最近的研究表明,OH基团可以在烃表面(即环己烷片)的一侧形成稳定的氢键网络,与此同时,该表面另一侧的氢原子形成正电荷袋,可以吸引多余的电子。通过添加可以形成“具有内部溶剂化电子的阴离子”(AISE)状态的HF分子,可以进一步稳定该密度。这些系统显示出相对于垂直电子脱离(VDE)稳定。

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