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Charge Distribution in Homonuclear Bonds: A Semiempirical Modeling

机译:同核键中的电荷分布:半经验模型

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Atoms characterized by nonequivalent electronegativities form chemical bonds by exchanging electrical charge. The fraction of charge exchanged is dictated by the electronegativity differences among the system atoms. In the electronegativity equalization method, the charge distribution is estimated by forcing the system to relax to a common chemical potential, which corresponds to its configuration of energy minimum. By definition, this method cannot be applied to homonuclear bonds. A model is proposed to estimate the charge shared in molecular orbitals of homonuclear molecules. The model expands upon the electronegativity equalization method by adding formalism to describe the spin coupling characteristic of homonuclear bonds. Results are in excellent agreement with other quantum mechanical estimations of the charge distributions.
机译:以非等电负性为特征的原子通过交换电荷形成化学键。交换的电荷分数由系统原子之间的电负性差异决定。在电负性均衡方法中,通过迫使系统松弛到共同的化学势来估算电荷分布,该化学势对应于其最小能量配置。根据定义,此方法不能应用于同核键。提出了一种模型来估计在同核分子的分子轨道中共享的电荷。该模型通过添加形式主义来描述同核键的自旋耦合特性,从而扩展了电负性均衡方法。结果与电荷分布的其他量子力学估计非常吻合。

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