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π-堆积和氢键相互作用的协同性以及取代基对 X-苯//吡啶…HF 配合物的影响。

Cooperativity of pi-stacking and hydrogen bonding interactions and substituent effects on X-ben//pyr...H-F complexes.

机构信息

Department of Chemistry, University of Sistan & Baluchestan, P.O. Box 98135-674, Zahedan, Iran.

出版信息

Phys Chem Chem Phys. 2009 Dec 28;11(48):11424-31. doi: 10.1039/b912419e. Epub 2009 Oct 20.

Abstract

Quantum chemical calculations have been performed to gauge the effect of pi-stacking and hydrogen bonding interactions on each other in X-ben//pyr...H-F (X = NO(2), CF(3), CN, F, Cl, CH(3) and OH) complexes. The results indicate the cooperativity of interactions in these complexes where face-to-face aromatic interactions and hydrogen bonding interactions coexist. The effects of substituents on the X-ben//pyr...H-F complexes have also been studied with the MP2 method using 6-31G** basis set. The total binding energy increases in both electron-donating and withdrawing substituents. Herein, computational results indicate an enhanced pi-stacking interaction for all substituted complexes related to an unsubstituted case. On the other hand, H...N hydrogen bond interaction is declined by strong electron withdrawing substituents (NO(2) and CN) only. The cooperativity of pi-stacking and H...N hydrogen bond interaction has also been studied by using the atoms in molecules (AIM), natural bond orbital (NBO) and molecular electrostatic potential (MEP) analyses. There are good relationships between the Hammett constants and energy data, geometrical parameters, and the results of population analysis in X-ben//pyr...H-F and X-ben//pyr complexes. The characteristics of interactions are directly related to the electrostatic interaction between the rings.

摘要

已进行量子化学计算,以衡量在 X-ben//pyr...H-F(X = NO(2)、CF(3)、CN、F、Cl、CH(3)和 OH)复合物中π-堆积相互作用和氢键相互作用彼此的影响。结果表明这些复合物中存在相互作用的协同性,其中存在面对面的芳构相互作用和氢键相互作用。还使用 MP2 方法和 6-31G**基组研究了取代基对 X-ben//pyr...H-F 复合物的影响。在供电子和吸电子取代基中,总结合能均增加。在此,计算结果表明所有取代复合物的π-堆积相互作用均增强,与未取代的情况相比。另一方面,仅强吸电子取代基(NO(2)和 CN)会降低 H...N 氢键相互作用。还通过原子在分子(AIM)、自然键轨道(NBO)和分子静电势(MEP)分析研究了π-堆积和 H...N 氢键相互作用的协同性。在 X-ben//pyr...H-F 和 X-ben//pyr 复合物中,Hammett 常数与能量数据、几何参数和布居分析结果之间存在良好的关系。相互作用的特征与环之间的静电相互作用直接相关。

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