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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Understanding the Role of Intra- and Intermolecular Interactions in the Formation of Single- and Double-Helical Structures of Aromatic Oligoamides: A Computational Study
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Understanding the Role of Intra- and Intermolecular Interactions in the Formation of Single- and Double-Helical Structures of Aromatic Oligoamides: A Computational Study

机译:了解内和分子间相互作用在芳香低聚酰胺单螺旋和双螺旋结构形成中的作用:一项计算研究。

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摘要

The generalized energy-based fragmentation (GEBF) approach has been implemented to extend the applications of density function theory (DFT) with empirical van der Waals (vdW) correction (Wu, Q.; Yang, W. T. J. Chem. Phys. 2002, 116, 515.) to large supramolecular systems with extensive π—π stacking interactions. This mixed approach, DFT(vdW)-GEBF, is applied to investigate the energies and structures of several aromatic oligoamide foldamers. Our calculations show that the formation of single helical structures is mainly driven by the stacking interaction between neighboring aromatic rings, further stabilized by the intramolecular hydrogen bonds of the backbone. The dimerization of two single helical strands to form the double helical structure is an energetically favorable process, which is mainly driven by extensive interstrand aromatic—aromatic interactions. However, the dimerization energy tends to decrease significantly for longer ohgomeric strands.
机译:已实施了通用的基于能量的碎片化(GEBF)方法,以通过经验范德华(vdW)校正扩展密度泛函理论(DFT)的应用(Wu,Q .; Yang,WTJ Chem。Phys。2002,116, 515.)到具有大量π-π堆积相互作用的大型超分子系统。这种混合方法DFT(vdW)-GEBF用于研究几种芳族低酰胺折叠剂的能量和结构。我们的计算表明,单个螺旋结构的形成主要是由相邻的芳环之间的堆积相互作用驱动的,并由主链的分子内氢键进一步稳定。两个单螺旋链的二聚形成双螺旋结构是一个在能量上有利的过程,其主要由广泛的链间芳族-芳族相互作用驱动。然而,对于更长的寡聚链,二聚能趋于显着降低。

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