Suppr超能文献

含氟芳香环分子间相互作用的定量测定

Quantitative determination of intermolecular interactions with fluorinated aromatic rings.

作者信息

Adams H, Blanco J L, Chessari G, Hunter C A, Low C M, Sanderson J M, Vinter J G

机构信息

Centre for Chemical Biology, Krebs Institute for Biomolecular Science, Department of Chemistry, University of Sheffield, UK.

出版信息

Chemistry. 2001 Aug 17;7(16):3494-503. doi: 10.1002/1521-3765(20010817)7:16<3494::aid-chem3494>3.0.co;2-2.

Abstract

The chemical double mutant cycle approach has been used to investigate substituent effects on intermolecular interactions between aromatic rings and pentafluorophenyl pi-systems. The complexes have been characterised using 1H and 19F NMR titrations, X-ray crystal structures of model compounds and molecular mechanics calculations. In the molecular zipper system used for these experiments, H-bonds and the geometries of the interacting surfaces favour the approach of the edge of the aromatic ring with the face of the pentafluorophenyl pi-system. The interactions are generally repulsive and this repulsion increases with more electron-withdrawing substituents up to a limit of +2.2 kJ mol(-1), when the complex distorts to minimise the unfavourable interaction. Strongly electron-donating groups cause a change in the geometry of the aromatic interaction and attractive stacking interactions are found (-1.6 kJ mol(-1) for NMe2). These results are generally consistent with an electrostatic model: the polarisation of the pentafluorophenyl ring leads to a partial positive charge located at the centre and this leads to repulsive interactions with the positive charges on the protons on the edge of the aromatic ring; when the aromatic ring has a high pi-electron density there is a large electrostatic driving force in favour of the stacked geometry which places this pi-electron density over the centre of the positive charge on the pentafluorophenyl group.

摘要

化学双突变循环方法已被用于研究取代基对芳环与五氟苯基π体系之间分子间相互作用的影响。通过¹H和¹⁹F NMR滴定、模型化合物的X射线晶体结构以及分子力学计算对这些配合物进行了表征。在用于这些实验的分子拉链体系中,氢键和相互作用表面的几何形状有利于芳环边缘与五氟苯基π体系平面的靠近。这些相互作用通常是排斥性的,并且随着吸电子取代基的增加,这种排斥作用增强,直至达到 +2.2 kJ mol⁻¹ 的极限,此时配合物会发生扭曲以最小化不利的相互作用。强供电子基团会导致芳环相互作用几何形状的改变,并发现有吸引性的堆积相互作用(对于NMe₂为 -1.6 kJ mol⁻¹)。这些结果总体上与静电模型一致:五氟苯基环的极化导致中心带有部分正电荷,这导致与芳环边缘质子上的正电荷产生排斥相互作用;当芳环具有高π电子密度时,存在很大的静电驱动力有利于形成将该π电子密度置于五氟苯基正电荷中心上方的堆积几何形状。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验