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Hydration of excess electrons trapped in charge pockets on molecular surface

机译:分子表面电荷袋中捕获的多余电子的水化

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In this work we strive to design a novel electron trap located on a molecular surface. The process of electron trapping involves hydration of the trapped electron. Previous calculations on surface electron trapping revealed that clusters of OH groups can form stable hydrogen-bonded networks on one side of a hydrocarbon surface (i.e. cyclohexane sheets), while the hydrogen atoms on the opposite side of the surface form pockets of positive charge that can attract extra negative charge. The excess electron density on such surfaces can be further stabilized by interactions with water molecules. Our calculations show that these anionic systems are stable with respect to vertical electron detachment (VIDE). (c) 2006 Published by Elsevier B.V.
机译:在这项工作中,我们努力设计一种位于分子表面的新型电子陷阱。电子俘获的过程涉及俘获的电子的水合。先前对表面电子俘获的计算表明,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,而在表面另一侧的氢原子形成正电荷袋,吸引额外的负电荷。通过与水分子的相互作用,可以进一步稳定这种表面上的过量电子密度。我们的计算表明,这些阴离子体系相对于垂直电子脱离(VIDE)是稳定的。 (c)2006年由Elsevier B.V.发布

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