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重新审视二硼化锕化合物PaB中的芳香性和稳定性。

Revisiting aromaticity and stability in the diboron actinide compound PaB.

作者信息

Ding Chengxiang, Ruiz Lina, Vásquez-Espinal Alejandro, Pino-Rios Ricardo, Páez-Hernández Dayán, Pan Sudip, Leyva-Parra Luis, Alvarez-Thon Luis, Tiznado William

机构信息

Institute of Atomic and Molecular Physics, Jilin University Changchun 130023 China

Instituto de Ciencias Biomédicas, Facultad de Ciencias de la Salud, Universidad Autónoma de Chile Santiago de Chile Chile.

出版信息

Chem Sci. 2025 Aug 11. doi: 10.1039/d5sc02743h.

DOI:10.1039/d5sc02743h
PMID:40880804
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12371567/
Abstract

Clusters composed of heavy elements, particularly actinides, provide a compelling platform for exploring unconventional bonding and the role of relativistic effects in electronic structure and stability. In this study, we critically reassess the -symmetric PaB cluster, previously claimed to exhibit double Möbius-Craig aromaticity through delocalization of 4σ and 4π electrons. Our potential energy surface (PES) analysis disproves this assignment by showing that the structure is a higher-energy isomer; the most stable form adopts a distorted tetrahedral structure. Magnetically induced current density (MICD) analysis-based on fully relativistic four-component Dirac-Coulomb calculations-further reveals the absence of a net diatropic ring current. Instead, a weak net paratropic response and a localized vortex are observed, associated with a σ Pa-Pa bond dz orbitals. Multiconfigurational analysis using CASSCF(16,16) confirms that the structure is dominated by a single-reference configuration (88%), supporting the reliability of our DFT computations. As a point of contrast, we evaluated the ReB cluster-experimentally observed and computationally confirmed as the global minimum-which exhibits a strong diatropic ring current (16.3 nA T), demonstrating that MICD reliably captures aromaticity when transition-metal d-orbitals are genuinely involved in cyclic delocalization. These findings underscore the importance of rigorous PES validation, multiconfigurational treatment, and fully relativistic analysis, including spin-orbit coupling, when assessing aromaticity in clusters of heavy elements. More broadly, this work reinforces the need to critically reassess the growing number of 'unconventional' aromatic motifs, many of which arise from incomplete analysis or mischaracterization of electronic structure rather than genuine bonding novelty.

摘要

由重元素(特别是锕系元素)组成的团簇为探索非常规键合以及相对论效应在电子结构和稳定性中的作用提供了一个引人注目的平台。在本研究中,我们批判性地重新评估了 -对称的PaB团簇,该团簇先前被认为通过4σ和4π电子的离域表现出双莫比乌斯 - 克雷格芳香性。我们的势能面(PES)分析通过表明 结构是一种高能异构体来反驳这一归属;最稳定的形式采用扭曲的四面体结构。基于完全相对论四分量狄拉克 - 库仑计算的磁诱导电流密度(MICD)分析进一步揭示不存在净抗磁环电流。相反,观察到一个弱的净顺磁响应和一个局域涡旋,与一个σ Pa - Pa键 dz轨道相关。使用CASSCF(16,16)的多组态分析证实 结构由单一参考组态主导(88%),支持了我们DFT计算的可靠性。作为对比,我们评估了ReB 团簇——实验观察到并通过计算确认为全局最小值——它表现出强抗磁环电流(16.3 nA T),表明当过渡金属d轨道真正参与环状离域时,MICD能够可靠地捕捉芳香性。这些发现强调了在评估重元素团簇的芳香性时,严格的PES验证、多组态处理以及包括自旋 - 轨道耦合在内的完全相对论分析的重要性。更广泛地说,这项工作强化了对越来越多“非常规”芳香基序进行批判性重新评估的必要性,其中许多是由于电子结构分析不完整或错误表征而非真正的键合新奇性导致的。

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