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CH和[CH]中¹³C NMR化学位移各向异性模式的计算研究。关于较小孤立五边形结构单元中平面化及同心芳香族物种形成时其变化的见解。

Computational Study of C NMR Chemical Shift Anisotropy Patterns in CH and [CH]. Insights into Their Variation upon Planarization and Formation of Concentric Aromatic Species in the Smaller Isolated-Pentagon Structural Motif.

作者信息

Muñoz-Castro Alvaro, Caimanque-Aguilar Wilson, Morales-Verdejo Cesar

机构信息

Grupo de Química Inorgánica y Materiales Moleculares, Universidad Autonoma de Chile , El Llano Subercaseaux 2801, Santiago, Chile.

Doctorado en Fisicoquímica Molecular, Universidad Andres Bello , Av. Republica 275, 8370146 Santiago, Chile.

出版信息

J Phys Chem A. 2017 Apr 6;121(13):2698-2703. doi: 10.1021/acs.jpca.7b01477. Epub 2017 Mar 24.

DOI:10.1021/acs.jpca.7b01477
PMID:28319378
Abstract

Corannulene, CH, exhibits a concave surface in the ground state that is able to experience a bowl-to-bowl inversion through a planar conformation. Such a structure is the smaller example resembling an isolated-pentagon motif, as a relevant fragment in fullerene chemistry. Here, we explored the differences between bowl and planar conformations involving both energetic and C NMR properties, for the neutral and tetraanionic species by using density functional theory (DFT) methods. This allows us to understand the variation of the chemical environment at the carbon atoms upon planarization of this representive motif. Our results reveal that the variation of the chemical shift comes about from the variation of different main components of the shielding tensor, according to the relative position of the carbon atoms in the structure (i.e., rim, hub, and protonated), which is more relevant for both hub and protonated sites, in contrast to the rim carbon remaining almost unshifted. Interestingly, the planar transition state exhibits a more favorable bonding situation than the bowl-shaped conformation; however, the higher strain is enough to overcome this extra stabilization. Upon reduction to the tetraanionic counterpart (CH), a lesser strain in the planar conformation is observed, decreasing the inversion barrier. In addition, the formation of the concentric aromatic ring systems in CH, results in a more axially symmetric chemical shift anisotropy (CSA) tensor for the hub carbons, accounting in a local manner, for the concentric aromatic behavior in such structure in contrast to the neutral parent. These observations can be useful to evaluate the aromatic behavior of teh isolated-pentagon rule (IPR) motif in fullerene cages.

摘要

碗烯(CH)在基态下呈现出一个凹面,能够通过平面构象经历碗状到碗状的翻转。这种结构是类似于孤立五边形 motif 的较小例子,是富勒烯化学中的一个相关片段。在这里,我们通过使用密度泛函理论(DFT)方法,探索了中性和四价阴离子物种的碗状和平面构象之间在能量和碳核磁共振性质方面的差异。这使我们能够理解在这个代表性 motif 平面化时碳原子化学环境的变化。我们的结果表明,化学位移的变化源于屏蔽张量不同主要成分的变化,这取决于碳原子在结构中的相对位置(即边缘、中心和质子化位置),对于中心和质子化位置来说这种变化更显著,而边缘碳原子几乎没有位移。有趣的是,平面过渡态表现出比碗状构象更有利的键合情况;然而,更高的应变足以克服这种额外的稳定性。还原为四价阴离子对应物(CH)后,观察到平面构象中的应变较小,并降低了翻转势垒。此外,CH 中同心芳环系统的形成导致中心碳原子的化学位移各向异性(CSA)张量更具轴对称性,从局部角度解释了这种结构与中性母体相比具有同心芳族行为的原因。这些观察结果有助于评估富勒烯笼中孤立五边形规则(IPR)motif 的芳族行为。

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