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首页> 外文期刊>International Journal of Quantum Chemistry >Density functional study of the redox processes in subphthalocyanines
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Density functional study of the redox processes in subphthalocyanines

机译:亚酞菁中氧化还原过程的密度泛函研究

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A theoretical investigation on the redox processes in the subphthalocyanines (SubPcs) was performed. Singly and doubly oxidative and reductive transformations were considered. The full geometry optimization of the participating molecules showed that the cone shape arrangement of the SubPc is preserved in their ionic derivatives even when two electrons are either donated or substrated from the molecules. The biggest geometric changes under electron exchange processes were calculated for the B-Cl bond distance. The electronic density distribution over all the products remains almost invariable with respect to the neutral molecule. Our calculations on the neutral and charged SubPcs demonstrated that they behaves as conjugated systems, their electronic parameters being correlatively altered by the redox electron exchange. Further, the electronic state of the macrocycle atoms also depends on an intense electronic flow among the macrocyclic skeleton and the surrounding (axial chlorine and peripheral hydrogen) atoms that is associated with the redox process.
机译:对亚酞菁(SubPcs)中的氧化还原过程进行了理论研究。考虑了单一和双重的氧化和还原转化。参与分子的完整几何优化表明,即使两个电子从分子中被赠与或受质时,SubPc的圆锥形排列仍保留在其离子衍生物中。计算出电子交换过程中B-Cl键距的最大几何变化。相对于中性分子,所有产品上的电子密度分布几乎保持不变。我们对中性和带电SubPcs的计算表明,它们表现为共轭体系,其电子参数被氧化还原电子交换相关地改变。此外,大环原子的电子状态还取决于大环骨架与周围与氧化还原过程有关的(轴向氯和外围氢)原子之间的强电子流。

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