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FHF 阴离子在真空、CDCl₃ 和 CCl₄ 中的对称性与动力学。溶剂 - 溶质间波动的氢和卤素键的从头算分子动力学研究。

Symmetry and dynamics of FHF anion in vacuum, in CDCl and in CCl. Ab initio MD study of fluctuating solvent-solute hydrogen and halogen bonds.

作者信息

Pylaeva S A, Elgabarty H, Sebastiani D, Tolstoy P M

机构信息

Institute of Chemistry, Martin-Luther Universität Halle-Wittenberg, Germany.

Center for Magnetic Resonance, St. Petersburg State University, Russia.

出版信息

Phys Chem Chem Phys. 2017 Oct 4;19(38):26107-26120. doi: 10.1039/c7cp04493c.

Abstract

FHF anion is a classic example of a central-symmetric strongly hydrogen bonded system that has been intensively investigated both experimentally and theoretically. In this paper we focus on solvent effects on symmetry, structure and dynamics of the anion. The FHF anion is studied in vacuum, dissolved in CHCl and dissolved in CCl by ab initio molecular dynamics simulations. We show that CHCl molecules form CHF hydrogen bonds with lone pairs of fluorine atoms, while CCl molecules form halogen bonds. These specific non-covalent solvent-solute interactions are cooperatively coupled to the FHF hydrogen bonds. The fluctuation of solvent molecules' positions is the driving force changing the FHF hydrogen bond geometry. Most of the time, the anion is solvated asymmetrically, which leads to the asymmetric bridging particle position, though the time-averaged D symmetry is retained. Interestingly, this transient asymmetrization of FHF is more pronounced in CCl, than in CHCl. We show that the H and F NMR chemicals shifts react sensitively to the changes of anion's geometry and the limiting chemical shifts of free solvated FH and F are strongly solvent-dependent.

摘要

FHF⁻阴离子是一个中心对称的强氢键体系的经典例子,该体系已在实验和理论上进行了深入研究。在本文中,我们关注溶剂对该阴离子的对称性、结构和动力学的影响。通过从头算分子动力学模拟研究了真空中、溶解在CHCl₃中和溶解在CCl₄中的FHF⁻阴离子。我们表明,CHCl₃分子与氟原子的孤对电子形成CHF氢键,而CCl₄分子形成卤键。这些特定的非共价溶剂 - 溶质相互作用与FHF氢键协同耦合。溶剂分子位置的波动是改变FHF氢键几何结构的驱动力。大多数时候,阴离子以不对称方式被溶剂化,这导致桥连粒子位置不对称,尽管保留了时间平均的D对称性。有趣的是,FHF的这种瞬态不对称化在CCl₄中比在CHCl₃中更明显。我们表明,¹H和¹⁹F NMR化学位移对阴离子几何结构的变化反应敏感,并且游离溶剂化FH和F的极限化学位移强烈依赖于溶剂。

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