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偶极矩推动氟代苯乙炔异二聚体的π堆积。

Dipole Moment Propels π-Stacking of Heterodimers of Fluorophenylacetylenes.

作者信息

Kundu Aniket, Sen Saumik, Patwari G Naresh

机构信息

Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India.

出版信息

J Phys Chem A. 2020 Sep 17;124(37):7470-7477. doi: 10.1021/acs.jpca.0c04005. Epub 2020 Sep 8.

Abstract

Electronic and vibrational spectroscopic investigations in combination with quantum chemical calculations were carried out to probe the formation of four sets of heterodimers of phenylacetylene with 2-fluorohenylacetylene, 3-fluorophenylacetylene, 4-fluorophenylacetylene, and 2,6-difluorophenylacetylene. The interaction of phenylacetylene with fluorophenylacetylenes leads to marginal (2-9 cm) red-shifts in the acetylenic C-H stretching frequencies of fluorophenylacetylenes, which suggests that constituent monomers are minimally perturbed in the heterodimer. On the other hand, the density-functional-theory-based calculations indicate that π-stacked structures outweigh other structures incorporating C-H···π and C-H···F interactions by about 8 kJ mol or more. The IR spectra in the acetylenic C-H stretching region were interpreted based on the perturbed dipole model, which suggests formation of predominantly antiparallel π-stacked structures, propelled by dipole moment. However, the energy decomposition analysis suggests that among stabilizing components dispersion dominates, while electrostatics plays a pivotal role in the formation of the π-stacked structures. Interestingly, the ability of 2-fluorophenylacetylene and 2,6-difluorophenylacetylene to π-stack differs significantly, even though both of them have almost identical dipole moments and the dipole moment propels the formation of π-stack structures. These results suggest π-stacking transcends the classical electrostatic description in terms of dipole moment.

摘要

结合量子化学计算进行了电子和振动光谱研究,以探究苯乙炔与2-氟苯乙炔、3-氟苯乙炔、4-氟苯乙炔和2,6-二氟苯乙炔形成的四组异二聚体的形成情况。苯乙炔与氟苯乙炔的相互作用导致氟苯乙炔炔基C-H伸缩频率出现微小的(2-9厘米)红移,这表明在异二聚体中组成单体受到的扰动最小。另一方面,基于密度泛函理论的计算表明,π堆积结构比包含C-H···π和C-H···F相互作用的其他结构更稳定,能量高出约8 kJ/mol或更多。根据微扰偶极子模型对炔基C-H伸缩区域的红外光谱进行了解释,该模型表明主要形成反平行π堆积结构,这是由偶极矩推动的。然而,能量分解分析表明,在稳定成分中,色散起主导作用,而静电在π堆积结构的形成中起关键作用。有趣的是,2-氟苯乙炔和2,6-二氟苯乙炔形成π堆积的能力有显著差异,尽管它们的偶极矩几乎相同,且偶极矩推动了π堆积结构的形成。这些结果表明,π堆积超越了基于偶极矩的经典静电描述。

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