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首页> 外文期刊>RSC Advances >Fluorine substitution effects of halide anion receptors based on the combination of a distinct hydrogen bond and anion-pi noncovalent interactions: a theoretical investigation
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Fluorine substitution effects of halide anion receptors based on the combination of a distinct hydrogen bond and anion-pi noncovalent interactions: a theoretical investigation

机译:基于独特的氢键和阴离子-π非共价相互作用的卤化物阴离子受体的氟取代作用:理论研究

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摘要

Noncovalent interactions between halide anions and a series of N-(4-vinyl-2-benzoic acid benzyl ester)-phenyl-urea containing receptors (1-8) based on hydrogen bond and (or) anion-pi interactions were investigated via theoretical calculations based on dispersion corrected density functional B3LYP-D3. Particularly, the fluorine substitution effects were deeply explored. The results showed that the substituent number and position of fluorine groups on the phenyl ring of the benzoic acid esters group has a significant effect on the configuration and cooperative properties of the hydrogen bond and anion-pi interactions. Consequently, a more feasible and rational geometric criterion for either a strong or weak halide-anion-pi contact was proposed via three inequalities independent of any empirical parameters, which is different from the criterion proposed very recently by Albrecht and Rissanen based on their experience with solid state anion-pi interactions (Chem. Sci., 2015, 6, 354-359). Additionally, electronic properties and behavior of the systems were discussed according to the calculations on the frontier molecular orbital, total electrostatic potential and visualized weak interactions regions. It is expected that the theoretical explorations from a molecular level in this work may be useful for future experimental study and helpful for understanding the structure-activity relationship between aromatic rings and anion-pi interactions in the case of combination of distinct noncovalent interactions.
机译:通过理论研究了卤离子与一系列含有N-(4-乙烯基-2-苯甲酸苄酯)-苯基脲的受体之间的非共价相互作用(1-8)和(-)阴离子-π相互作用基于色散校正密度函数B3LYP-D3的计算。特别是,对氟取代作用进行了深入研究。结果表明,苯甲酸酯基团的苯环上氟原子的取代基数量和位置对氢键的构型和协同性能以及阴离子-π相互作用具有重要影响。因此,通过独立于任何经验参数的三个不等式,提出了一个强或弱卤化物-阴离子-π接触的更可行,更合理的几何准则,这与Albrecht和Rissanen最近根据他们的经验提出的准则不同。固态阴离子-π相互作用(Chem。Sci。,2015,6,354-359)。此外,根据对前沿分子轨道,总静电势和可视化弱相互作用区域的计算,讨论了系统的电子性质和行为。预期在这项工作中从分子水平进行的理论探索对于将来的实验研究可能是有用的,并且在结合不同的非共价相互作用的情况下,有助于理解芳环与阴离子-pi相互作用之间的结构-活性关系。

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