Gung Benjamin W, Zou Yan, Xu Zhigang, Amicangelo Jay C, Irwin Daniel G, Ma Shengqian, Zhou Hong-Cai
Department of Chemistry & Biochemistry, Miami University, Oxford, Ohio 45056, USA.
J Org Chem. 2008 Jan 18;73(2):689-93. doi: 10.1021/jo702170j. Epub 2007 Dec 15.
Current models describe aromatic rings as polar groups based on the fact that benzene and hexafluorobenzene are known to have large and permanent quadrupole moments. This report describes a quantitative study of the interactions between oxygen lone pair and aromatic rings. We found that even electron-rich aromatic rings and oxygen lone pairs exhibit attractive interactions. Free energies of interactions are determined using the triptycene scaffold and the equilibrium constants were determined by low-temperature 1H NMR spectroscopy. An X-ray structure analysis for one of the model compounds confirms the close proximity between the oxygen and the center of the aromatic ring. Theoretical calculations at the MP2/aug-cc-pVTZ level corroborate the experimental results. The origin of attractive interactions was explored by using aromatic rings with a wide range of substituents. The interactions between an oxygen lone pair and an aromatic ring are attractive at van der Waals' distance even with electron-donating substituents. Electron-withdrawing groups increase the strength of the attractive interactions. The results from this study can be only partly rationalized by using the current models of aromatic system. Electrostatic-based models are consistent with the fact that stronger electron-withdrawing groups lead to stronger attractions, but fail to predict or rationalize the fact that weak attractions even exist between electron-rich arenes and oxygen lone pairs. The conclusion from this study is that aromatic rings cannot be treated as a simple quadrupolar functional group at van der Waals' distance. Dispersion forces and local dipole should also be considered.
目前的模型将芳香环描述为极性基团,这是基于已知苯和六氟苯具有较大的永久四极矩这一事实。本报告描述了对氧孤对与芳香环之间相互作用的定量研究。我们发现,即使是富电子的芳香环和氧孤对之间也存在吸引相互作用。使用三蝶烯支架确定相互作用的自由能,并通过低温1H NMR光谱确定平衡常数。对其中一种模型化合物的X射线结构分析证实了氧与芳香环中心之间的紧密接近。在MP2/aug-cc-pVTZ水平上的理论计算证实了实验结果。通过使用具有广泛取代基的芳香环来探索吸引相互作用的起源。即使带有供电子取代基,氧孤对与芳香环之间在范德华距离处的相互作用也是吸引性的。吸电子基团会增加吸引相互作用的强度。本研究的结果仅部分地符合目前的芳香体系模型。基于静电的模型与更强的吸电子基团导致更强吸引力这一事实一致,但无法预测或解释富电子芳烃与氧孤对之间甚至存在弱吸引力这一事实。本研究的结论是,在范德华距离处,芳香环不能被视为简单的四极官能团。还应考虑色散力和局部偶极。