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扩展体系中σ-σ、σ-π和π-π堆积的本质

On the Nature of σ-σ, σ-π, and π-π Stacking in Extended Systems.

作者信息

Cabaleiro-Lago Enrique M, Rodríguez-Otero Jesús

机构信息

Facultade de Ciencias (Dpto. de Química Física), Universidade de Santiago de Compostela, Campus de Lugo. Avda. Alfonso X El Sabio s/n, 27002 Lugo, Galicia, Spain.

CIQUS and Facultade de Química (Dpto. de Química Física), Universidade de Santiago de Compostela, 15782 Santiago de Compostela, Galicia, Spain.

出版信息

ACS Omega. 2018 Aug 17;3(8):9348-9359. doi: 10.1021/acsomega.8b01339. eCollection 2018 Aug 31.

Abstract

Stacking interactions have been evaluated, employing computational methods, in dimers formed by analogous aliphatic and aromatic species of increasing size. Changes in stability as the systems become larger are mostly controlled by the balance of increasing repulsion and dispersion contributions, while electrostatics plays a secondary but relevant role. The interaction energy increases as the size of the system grows, but it does much faster in π-π dimers than in σ-π complexes and more remarkably than in σ-σ dimers. The main factor behind the larger stability of aromatic dimers compared to complexes containing aliphatic molecules is related to changes in the properties of the aromatic systems due to electron delocalization leading to larger dispersion contributions. Besides, an extra stabilization in π-π complexes is due to the softening of the repulsive wall in aromatic species that allows the molecules to come closer.

摘要

利用计算方法,对由尺寸不断增大的类似脂肪族和芳香族物种形成的二聚体中的堆积相互作用进行了评估。随着体系变大,稳定性的变化主要由排斥作用和色散作用贡献的增加之间的平衡控制,而静电作用起次要但相关的作用。相互作用能随着体系尺寸的增大而增加,但在π-π二聚体中比在σ-π配合物中增加得更快,比在σ-σ二聚体中增加得更显著。与含有脂肪族分子的配合物相比,芳香族二聚体具有更大稳定性的主要因素与芳香族体系由于电子离域导致更大色散贡献而引起的性质变化有关。此外,π-π配合物中的额外稳定性是由于芳香族物种中排斥壁的软化,使得分子能够靠得更近。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/699d/6645327/01f76f56bde3/ao-2018-01339t_0001.jpg

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