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首页> 外文期刊>Physical chemistry chemical physics: PCCP >The predictive power of aromaticity: quantitative correlation between aromaticity and ionization potentials and HOMO-LUMO gaps in oligomers of benzene, pyrrole, furan, and thiophene
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The predictive power of aromaticity: quantitative correlation between aromaticity and ionization potentials and HOMO-LUMO gaps in oligomers of benzene, pyrrole, furan, and thiophene

机译:芳香性的预测力:苯,吡咯,呋喃和噻吩的低聚物中芳香性和电离电位与Homo-Lumo间隙之间的定量相关性

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摘要

Aromaticity is a central and ubiquitous concept in organic chemistry, and is used extensively to explain various phenomena. Yet, aromaticity cannot be observed or measured as a property in its own right and, to date, only qualitative and semi-quantitative relationships have been described between aromaticity and an observable property. We now demonstrate for the first time a robust quantitative relationship between the HOMO-LUMO gap and adiabatic ionization potential of a polycyclic aromatic hydrocarbon oligomer - both measurable physical quantities - and its aromaticity, as quantified by the Nucleus Independent Chemical Shift (NICS) index. The agreement found for a range of structurally and electronically diverse oligomeric systems of varying lengths is so well-behaved as to enable accurate prediction of the properties of longer members of the respective oligomer family. The established correlation allows for preliminary screening of compounds geared towards functional use.
机译:芳香性是有机化学中的中核和无处不在的概念,并且广泛用于解释各种现象。 然而,在自己的权利和迄今为止,芳香性无法观察或衡量芳香性,只有在芳香性和可观察性的情况下已经描述了定性和半定量关系。 我们现在首次证明了多环芳族烃低聚物的HOMO-LUMO间隙和绝热电离电位与其可测量的物理量 - 及其芳香性的稳健定量关系,由核独立化学换档(NIC)指数量化。 在结构上和电子方式的不同长度的一系列结构和电子各种低聚体系中的协议非常良好地表现得能够精确地预测各种低聚物系列的较长成员的性质。 所建立的相关性允许术中施加朝向功能使用的化合物筛选。

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