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平面四元二硼镤金属化合物,具有双莫比乌斯芳香性。

Planar Four-Membered Diboron Actinide Compound with Double Möbius Aromaticity.

机构信息

School of Chemistry, Southwest Jiaotong University, Chengdu, Sichuan 610031, China.

The State Key Laboratory of Physical Chemistry of Solid Surfaces, iChEM, Fujian Provincial Key Laboratory of Theoretical and Computational Chemistry and College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, Fujian 361005, China.

出版信息

J Am Chem Soc. 2023 Apr 12;145(14):8107-8113. doi: 10.1021/jacs.3c00907. Epub 2023 Mar 28.

Abstract

The Möbius rule predicts that a planar four-membered metallacycle can be aromatic with four mobile electrons, but such a simple ring has escaped recognition because it usually favors Hückel anti-aromaticity. Here, we report that a quasi-square four-membered actinide compound (PaB) is doubly Möbius aromatic. Chemical bonding analyses reveal that this diboron protactinium molecule has four delocalized π electrons in addition to four delocalized σ electrons, satisfying the 4n Möbius rule for both σ and π components. Energetically, the block-localized wavefunction method, which is the simplest variant of ab initio valence bond theory, shows that the delocalization energy for the π and σ electrons reaches up to 65.0 and 72.3 kcal/mol, respectively, while the extra cyclic resonance energy (ECRE) amounts to 45 kcal/mol. The large positive ECRE values strongly confirm the unprecedented double Möbius aromaticity in PaB. We anticipate that this new type of aromatic molecule can enrich the concept of Möbius aromaticity and open a new avenue for actinide compounds.

摘要

莫比乌斯规则预测,平面四元金属环可以是具有四个移动电子的芳香族化合物,但由于其通常倾向于休克尔反芳香性,因此这种简单的环一直未被识别。在这里,我们报告了一种准四方四元锕系化合物 (PaB) 是双重莫比乌斯芳香族化合物。化学键分析表明,这种二硼镤分子除了四个离域 σ 电子外,还有四个离域 π 电子,满足 σ 和 π 分量的 4n 莫比乌斯规则。从能量角度来看,最简单的从头算价键理论变体——块定域波函数方法表明,π 和 σ 电子的离域能分别高达 65.0 和 72.3 kcal/mol,而额外的环状共振能 (ECRE) 则达到 45 kcal/mol。巨大的正 ECRE 值强烈证实了 PaB 中前所未有的双重莫比乌斯芳香性。我们预计这种新型芳香族分子可以丰富莫比乌斯芳香性的概念,并为锕系化合物开辟新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91e1/10103132/e71bfa3be554/ja3c00907_0002.jpg

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