Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China.
J Comput Chem. 2012 May 30;33(14):1328-37. doi: 10.1002/jcc.22964. Epub 2012 Mar 20.
Interactions of anions with simple aromatic compounds have received growing attention due to their relevancy in various fields. Yet, the anion-π interactions are generally very weak, for example, there is no favorable anion-π interaction for the halide anion F(-) on the simplest benzene surface unless the H-atoms are substituted by the highly negatively charged F. In this article, we report a type of particularly strong anion-π interactions by investigating the adsorptions of three halide anions, that is, F(-), Cl(-), and Br(-), on the hydrogenated-graphene flake using the density functional theory. The anion-π interactions on the graphene flake are shown to be unexpectedly strong compared to those on simple aromatic compounds, for example, the F(-)-adsorption energy is as large as 17.5 kcal/mol on a graphene flake (C(84) H(24)) and 23.5 kcal/mol in the periodic boundary condition model calculations on a graphene flake C(113) (the supercell containing a F(-) ion and 113 carbon atoms). The unexpectedly large adsorption energies of the halide anions on the graphene flake are ascribed to the effective donor-acceptor interactions between the halide anions and the graphene flake. These findings on the presence of very strong anion-π interactions between halide ions and the graphene flake, which are disclosed for the first time, are hoped to strengthen scientific understanding of the chemical and physical characteristics of the graphene in an electrolyte solution. These favorable interactions of anions with electron-deficient graphene flakes may be applicable to the design of a new family of neutral anion receptors and detectors.
阴离子与简单芳香族化合物的相互作用由于其在各个领域的相关性而受到越来越多的关注。然而,阴离子-π相互作用通常非常弱,例如,在最简单的苯表面上,卤素阴离子 F(-) 没有有利的阴离子-π相互作用,除非 H 原子被高度带负电荷的 F 取代。在本文中,我们通过使用密度泛函理论研究三种卤素阴离子,即 F(-)、Cl(-)和 Br(-),在氢化石墨烯薄片上的吸附,报道了一种特别强的阴离子-π相互作用。与简单芳香族化合物相比,石墨烯薄片上的阴离子-π相互作用出乎意料地强,例如,在石墨烯薄片(C(84)H(24))上 F(-)的吸附能高达 17.5 kcal/mol,在石墨烯薄片 C(113)的周期性边界条件模型计算中为 23.5 kcal/mol(包含一个 F(-)离子和 113 个碳原子的超胞)。卤素阴离子在石墨烯薄片上出乎意料的大吸附能归因于卤素阴离子和石墨烯薄片之间的有效供体-受体相互作用。这些首次揭示的卤化物阴离子与石墨烯薄片之间存在非常强的阴离子-π相互作用的发现,有望增强对电解质溶液中石墨烯的化学和物理特性的科学理解。阴离子与缺电子石墨烯薄片的这些有利相互作用可能适用于新型中性阴离子受体和探测器的设计。