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中性和阳离子吡啶的 N-杂环 π-堆积相互作用的综合实验研究。

Comprehensive experimental study of N-heterocyclic π-stacking interactions of neutral and cationic pyridines.

机构信息

Department of Chemistry and Biochemistry, University of South Carolina, Columbia, South Carolina 29208, United States.

出版信息

J Org Chem. 2013 Jun 7;78(11):5303-13. doi: 10.1021/jo400370e. Epub 2013 May 29.

Abstract

A comprehensive experimental study was carried out by measuring the relative strengths of parallel π-stacking interactions of N-heterocycles with nonheterocycles. A versatile and rigid model system was developed, which was in equilibrium between a "closed" conformation that forms an intramolecular π-stacking interaction and an "open" conformation that cannot form the interaction. First, the formation and geometries of the intramolecular N-heterocyclic π-stacking interactions were verified by X-ray crystallography. Next, the closed/open ratios were measured in solution via integration of the (1)H NMR spectra, providing an accurate comparison of the N-heterocyclic π-stacking interactions. The synthetic versatility of this model system enabled the systematic and comprehensive comparison of the influences of position, charge, and substituent effects of the nitrogen atom of the N-heterocycles within a single model system. The π-stacking interactions of the neutral N-heterocyclic rings were slightly stronger than that of nonheterocyclic rings. Cationic N-heterocycles formed significantly stronger π-stacking interactions than neutral N-heterocycles. The position of the nitrogen atom also had a strong influence on the stability of N-heterocyclic π-stacking complexes. Interestingly, opposite stability trends were observed for neutral and cationic N-heterocycles. For neural N-heterocycles, geometries with the nitrogen away from the π-face of the opposing ring were the more stable. For cationic N-heterocycles, geometries with the nitrogen close to the π-face of the opposing ring were the more stable. Finally, N-methylated heterocycles consistently formed stronger π-stacking interactions than N-protonated heterocycles.

摘要

我们通过测量杂环与非杂环之间平行π-堆积相互作用的相对强度,进行了一项全面的实验研究。我们开发了一个多功能且刚性的模型体系,该体系在形成分子内π-堆积相互作用的“封闭”构象与不能形成相互作用的“开放”构象之间处于平衡状态。首先,通过 X 射线晶体学验证了分子内 N-杂环 π-堆积相互作用的形成和几何形状。接下来,通过积分(1)H NMR 谱测量了封闭/开放比,从而可以准确比较 N-杂环 π-堆积相互作用。该模型体系的合成多功能性使我们能够在单个模型体系中系统而全面地比较 N-杂环中氮原子的位置、电荷和取代基效应对π-堆积相互作用的影响。中性 N-杂环的π-堆积相互作用略强于非杂环的π-堆积相互作用。阳离子 N-杂环形成的π-堆积相互作用明显强于中性 N-杂环。氮原子的位置也对 N-杂环π-堆积配合物的稳定性有很强的影响。有趣的是,中性和阳离子 N-杂环的稳定性趋势相反。对于中性 N-杂环,氮原子远离对面环的π-面的几何形状更稳定。对于阳离子 N-杂环,氮原子靠近对面环的π-面的几何形状更稳定。最后,N-甲基化杂环始终比 N-质子化杂环形成更强的π-堆积相互作用。

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