首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Captodative Substitution Enhances the Diradical Character of Compounds, Reduces Aromaticity, and Controls Single-Molecule Conductivity Patterns: A Valence Bond Study
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Captodative Substitution Enhances the Diradical Character of Compounds, Reduces Aromaticity, and Controls Single-Molecule Conductivity Patterns: A Valence Bond Study

机译:Captodative取代增强了化合物的Diradical特征,减少了芳香性,并控制单分子电导率模式:价键研究

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摘要

The present contribution uses a valence bond (VB) perspective to consider the captodative substitution strategy, a method to enhance the diradical character of (potentially aromatic) compounds. We confirm the qualitative reasoning that has generally been used to rationalize the diradical-character-enhancing effect of captodative substitution: this type of substitution scheme disproportionally stabilizes specific Dewar/diradical(oid) VB structures, thus increasing their weight in the full ground-state wave function. Furthermore, we assess the effect of captodative substitution on the aromaticity of the considered compound. We observe a clear trade-off between diradical character and aromaticity for our model systems: as one of these properties increases, the other decreases. This finding is especially significant within the field of single-molecule electronics because it enables unification of the previously observed inverse proportionality between the aromaticity of a compound and the magnitude of conductance through that molecule, with the observed proportionality between diradical character and the magnitude of conductance associated with a compound. To some extent, both properties, i.e., aromaticity and diradical character, appear to be the flip-sides of the same coin.
机译:本贡献利用价键(VB)的观点考虑Captodative替代策略,一种增强(潜在芳族)化合物的Diradical特征的方法。我们确认了一般用于合理化Capodative替代的Diradical-Charach-Changing效果的定性推理:这种类型的替代方案不成比例地稳定特定的露天/狄拉科省(OID)VB结构,从而增加其在完全地面状态下的重量波函数。此外,我们评估CapoDative取代对所考虑的化合物的芳香性的影响。我们在模型系统的Diradical角色和芳香性之间观察到明确的权衡:作为其中一个属性的增加,另一个降低。该发现在单分子电子器件领域中特别重要,因为它能够在化合物的芳香性与通过该分子的芳香性与电导幅度之间的常见的逆相称统一,在Daradical特征和电导率之间观察到的比例与化合物相关联。在某种程度上,属性,即芳香性和Diradical,似乎是同一硬币的倒塌。

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