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碳氢化合物纳米环中磁感应电流的计算。

Calculation of magnetically induced currents in hydrocarbon nanorings.

作者信息

Taubert Stefan, Sundholm Dage, Jusélius Jonas, Klopper Wim, Fliegl Heike

机构信息

Department of Chemistry, P.O. Box 55 (A.I. Virtanens plats 1), FIN-00014 University of Helsinki, Finland.

出版信息

J Phys Chem A. 2008 Dec 25;112(51):13584-92. doi: 10.1021/jp805086q.

Abstract

Magnetically induced current densities, nuclear magnetic shieldings, and electric polarizabilities of planar ring-shaped hydrocarbons have been studied at the density-functional theory level using the Becke-Perdew (BP86) functional. The current densities were calculated using the Gauge-Including Magnetically Induced Current (GIMIC) method employing gauge-including atomic orbitals. The GIMIC calculations yield rules to estimate the global and local ring-current strengths as well as the current pathways for the hydrocarbon nanorings. For the overall antiaromatic molecules, aromatic groups such as benzene, naphthalene, anthracene, and pyrene moieties localize the ring current making the global ring currents vanish. The ability of the edge groups to localize the currents is related to the aromatic character of the molecule as a whole. The local ring current prefers to follow the edges of the group. Phenalenyl corner moieties are found to introduce strong global ring currents, whereas with fused benzene and pyrene corner groups the global ring current vanishes. Fused benzene rings in the corner or along the edge of overall antiaromatic molecules sustain local ring currents of about the same size as for a free benzene molecule. For the overall aromatic molecules, the global ring current is split along the bonds of the edge moieties, but the detailed division fulfilling Kirchhoff's current law is not easily predictable and must be calculated for each individual bond. At the phenalenyl corner moieties, the global ring current follows the innermost route isolating the rest of the group from the main delocalization pathway. A hydrocarbon nanoring sustaining strong ring currents should be large and formally aromatic with many and large aromatic moieties along the edges. A clear correlation between the strength of the global ring currents and the size of the electric polarizabilities is obtained. The calculated 1H NMR shieldings of a proton in immediate contact to the global ring current vary between 22 ppm and 67 ppm in the studied molecules. The trend correlates well with the global ring-current strengths, which are in the range of 0-88 nA/T. The 13C NMR shieldings are also sensitive to the strength of the global ring current, but they vary less systematically and are not as good an indicator of the current strength as the hydrogen shieldings.

摘要

利用Becke-Perdew(BP86)泛函,在密度泛函理论水平上研究了平面环状烃的磁感应电流密度、核磁屏蔽和电极化率。使用包含规范的磁诱导电流(GIMIC)方法并采用包含规范的原子轨道来计算电流密度。GIMIC计算得出了估计烃类纳米环的全局和局部环电流强度以及电流路径的规则。对于整体反芳香性分子,诸如苯、萘、蒽和芘部分等芳香基团会使环电流局部化,从而使全局环电流消失。边缘基团使电流局部化的能力与分子整体的芳香性相关。局部环电流更倾向于沿着基团的边缘流动。发现苊烯角部分会引入强烈的全局环电流,而对于稠合苯和芘角基团,全局环电流则消失。在整体反芳香性分子的角部或边缘的稠合苯环维持着与游离苯分子大小大致相同的局部环电流。对于整体芳香性分子,全局环电流沿着边缘部分的键分裂,但满足基尔霍夫电流定律的详细划分不易预测,必须针对每个单独的键进行计算。在苊烯角部分,全局环电流沿着最内层路径流动,将基团的其余部分与主要离域路径隔离开来。维持强环电流的烃类纳米环应该较大且形式上具有芳香性,沿边缘有许多且大的芳香部分。全局环电流强度与电极化率大小之间存在明显的相关性。在所研究的分子中,与全局环电流直接接触的质子的计算1H NMR屏蔽在22 ppm至67 ppm之间变化。该趋势与全局环电流强度密切相关,全局环电流强度范围为0 - 88 nA/T。13C NMR屏蔽也对全局环电流强度敏感,但它们的变化不太系统,并且作为电流强度的指标不如氢屏蔽好。

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