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[12]无穷烯中的不相交环形电流。

Non-intersecting ring currents in [12]infinitene.

作者信息

Orozco-Ic Mesías, Valiev Rashid R, Sundholm Dage

机构信息

Department of Chemistry, Faculty of Science, University of Helsinki, P.O. Box 55, A. I. Virtasen aukio 1, FIN-00014 Helsinki, Finland.

Research School of Chemistry and Applied Biomedical Sciences, National Research Tomsk Polytechnic University, Tomsk 634050, Russia.

出版信息

Phys Chem Chem Phys. 2022 Mar 16;24(11):6404-6409. doi: 10.1039/d2cp00637e.

Abstract

The aromaticity of the newly synthesized [12]infinitene is addressed via analysis of the magnetically induced current density and the induced magnetic field. Our calculations reveal that [12]infinitene responds to an external magnetic field by creating two current-density pathways that flow diatropically along the edges of the molecule. The current-density pathways do not intersect. The entire structure is completely shielded suggesting that the infinitene molecule is aromatic, contrary to what the Möbius rule for twisted annulene structures predicts. We also studied the dication of [12]infinitene, which sustains two paratropic ring currents flowing along the edges. The space between the stacked rings at the crossing point is shorter for the dication as compared to the neutral molecule. Hence, a strong through-space current density appears at the crossing point of π-π stacked rings.

摘要

通过对磁感应电流密度和感应磁场的分析,研究了新合成的[12]无穷烯的芳香性。我们的计算表明,[12]无穷烯通过形成两条沿分子边缘呈反磁环流的电流密度路径来响应外部磁场。电流密度路径不相交。整个结构完全被屏蔽,这表明无穷烯分子具有芳香性,这与扭曲轮烯结构的莫比乌斯规则预测相反。我们还研究了[12]无穷烯的二价阳离子,它维持着两条沿边缘流动的顺磁环流。与中性分子相比,二价阳离子在交叉点处堆叠环之间的空间更短。因此,在π-π堆叠环的交叉点处出现了很强的空间电流密度。

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