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Substituent Effects in C6F6-C6H5X Stacking Interactions

机译:C6F6-C6H5X堆积相互作用中的取代基效应

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摘要

Parallel displaced and sandwich configurations of hexafluorobenzene-substituted benzene dimers are studied by ab initio molecular orbital methods up to the MP2(full)/aug-cc-pVDZ level of theory to reveal how substituents influence π-π interactions. Two minimum energy configurations are found, one with the substituent group away from (>2a–2f) and the other with the substituent group on top of the π-face of the hexafluorobenzene (>3a–3f). Higher binding energies are predicted for dimers with the substituent on the π-face (>3a–3f). All sandwich dimers (>4a–4e) are found to be saddle points on the potential energy surfaces. A parallel displaced minimum energy configuration is also predicted for the parent complex, C6F6-C6H6, which is in contrast to predictions based on quadrupole moments of benzene and hexafuorobenzene. The preference for the parallel displaced, rather than the sandwich configuration, is rationalized based on the smaller interplanar distance in the former. The closeness of contact in the parallel displaced dimers leads to greater binding energies. The shape of the electron density isosurface of the monomers is suggested to provide a guide for the prediction of how arenes stack with one another. A large difference in binding energy between the C6F6 complex of aniline (>3e) and N,N-dimethylaniline (>3f) is calculated and charge-transfer interactions are suggested to play a role in the latter.
机译:通过从头开始的分子轨道方法研究了六氟苯取代的苯二聚体的平行取代和三明治构型,直至理论上的MP2(full)/ aug-cc-pVDZ水平,以揭示取代基如何影响π-π相互作用。找到两个最小的能量构型,一个具有取代基远离(> 2a-2f )的结构,另一个具有位于六氟苯π面顶部的取代基(> 3a-3f )。对于在π面(> 3a-3f )上具有取代基的二聚体,预测了更高的结合能。发现所有三明治二聚体(> 4a–4e )是势能表面上的鞍点。还预测了母体配合物C6F6-C6H6的平行位移最小能量构型,这与基于苯和六氟苯的四极矩的预测相反。基于前者中较小的晶面间距,可以合理选择平行位移而不是三明治结构。在平行位移的二聚体中接触的紧密性导致更大的结合能。建议单体的电子密度等值面的形状为预测芳烃如何相互堆叠提供指导。计算出苯胺(> 3e )和N,N-二甲基苯胺(> 3f )的C6F6配合物之间的结合能有很大差异,建议电荷转移相互作用起到在后者中的作用。

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  • 年(卷),期 -1(71),25
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  • 页码 9261–9270
  • 总页数 25
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