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外部电场对离解能和电子密度性质的影响:以氢键二聚体HF...HF为例。

Effect of an external electric field on the dissociation energy and the electron density properties: The case of the hydrogen bonded dimer HF...HF.

作者信息

Mata Ignasi, Molins Elies, Alkorta Ibon, Espinosa Enrique

机构信息

Institut de Ciència de Materials de Barcelona (ICMAB-CSIC), Campus UAB, 08193 Bellaterra, Spain.

出版信息

J Chem Phys. 2009 Jan 28;130(4):044104. doi: 10.1063/1.3065972.

Abstract

The effect of a homogeneous external electric field parallel to the hydrogen bond in the FH...FH dimer has been studied by theoretical methods. The quantum theory of atoms in molecules methodology has been used for analyzing the electron distribution of the dimer, calculated with different hydrogen bond distances and external field magnitudes. It is shown that an electric field in the opposite direction to the dipole moment of the system strengthens the interaction due to a larger mutual polarization between both molecules and increases the covalent character of the hydrogen bond, while an external field in the opposite direction has the inverse effect. The properties of the complex at its equilibrium geometry with applied field have been calculated, showing that dependencies between hydrogen bond distance, dissociation energy, and properties derived from the topological analysis of the electron distribution are analogous to those observed in families of XDH...AY complexes. The application of an external field appears as a useful tool for studying the effect of the atomic environment on the hydrogen bond interaction. In the case of FH...FH, both the kinetic energy density and the curvature of the electron density along the hydrogen bond at the bond critical point present a surprisingly good linear dependence on the dissociation energy. The interaction energy can be modeled by the sum of two exponential terms that depend on both the hydrogen bond distance and the applied electric field. Moreover, as indicated by the resulting interaction energy observed upon application of different external fields, the equilibrium distance varies linearly with the external field, and the dependence of the dissociation energy on either the hydrogen bond distance or the external electric field is demonstrated to be exponential.

摘要

已通过理论方法研究了与FH...FH二聚体中氢键平行的均匀外部电场的影响。分子中原子的量子理论方法已用于分析二聚体的电子分布,该分布是在不同氢键距离和外部场强下计算得出的。结果表明,与系统偶极矩方向相反的电场会由于两个分子之间更大的相互极化而增强相互作用,并增加氢键的共价特性,而相反方向的外部场则具有相反的效果。已计算了施加场时处于平衡几何构型的配合物性质,结果表明氢键距离、解离能以及从电子分布拓扑分析得出的性质之间的相关性类似于在XDH...AY配合物家族中观察到的相关性。外部场的应用似乎是研究原子环境对氢键相互作用影响的有用工具。对于FH...FH,键临界点处沿氢键的动能密度和电子密度曲率与解离能呈现出惊人的良好线性相关性。相互作用能可以由两个指数项之和建模,这两个指数项取决于氢键距离和施加的电场。此外,如施加不同外部场时观察到的相互作用能所示,平衡距离随外部场呈线性变化,并且解离能对氢键距离或外部电场的依赖性被证明是指数关系。

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