Lenara I. Valiulina, R. Valiyev, Victor N. Cherepanov and Elena V. Stepanova
{"title":"Aromaticity and ring currents in boron-doped porphyrins","authors":"Lenara I. Valiulina, R. Valiyev, Victor N. Cherepanov and Elena V. Stepanova","doi":"10.1039/D5NJ02286J","DOIUrl":null,"url":null,"abstract":"<p >The electron delocalization and aromaticity of a series of boron-doped porphyrins were investigated computationally using the ring current criterion. Magnetically induced current densities, ring current strengths, and aromatic ring current pathways were calculated at the density functional theory (DFT) level using the B3LYP and BHandHLYP functionals. The results demonstrate that boron coordination with O/Cl, as well as two-electron oxidation of B<small><sub>2</sub></small>(porphin) disrupt current pathways, significantly altering the aromatic character and magnetic properties of the molecules. Neutral B<small><sub>2</sub></small>(porphin) sustains a strong paratropic ring current of −39.1 nA T<small><sup>−1</sup></small> leading to its paramagnetism (<em>χ</em> = 15.6 a.u.). In contrast, its double charged forms adopt aromatic character with diatropic ring current (27.3 nA T<small><sup>−1</sup></small> and 28.3 nA T<small><sup>−1</sup></small> for dication and dianion, respectively) and diamagnetic susceptibility (<em>χ</em> = −77.2 a.u. and <em>χ</em> = −88.9 a.u. for dication and dianion, respectively). The introduction of electron-deficient boron atoms into the conjugated system of aromatic porphin and antiaromatic isophlorins reduces electron delocalization, as evidenced by significantly weaker ring current strengths compared to their parent counterparts without boron atoms. Charge-dependent ring current behavior was also observed for <em>meso</em>-boron-doped porphin, tetraoxa-isophlorin, and tetrathia-isophlorin. Notably, the B-tetrathia-isophlorin dication sustains a strong diatropic ring current of 13.1 nA T<small><sup>−1</sup></small> despite its distorted geometry, confirming its aromatic character. These findings highlight the tunable electronic and magnetic properties of boron-doped porphyrins, providing key insights for designing functional molecular materials.</p>","PeriodicalId":95,"journal":{"name":"New Journal of Chemistry","volume":" 36","pages":" 15829-15836"},"PeriodicalIF":2.5000,"publicationDate":"2025-08-13","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"New Journal of Chemistry","FirstCategoryId":"92","ListUrlMain":"https://pubs.rsc.org/en/content/articlelanding/2025/nj/d5nj02286j","RegionNum":3,"RegionCategory":"化学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q2","JCRName":"CHEMISTRY, MULTIDISCIPLINARY","Score":null,"Total":0}
引用次数: 0
Abstract
The electron delocalization and aromaticity of a series of boron-doped porphyrins were investigated computationally using the ring current criterion. Magnetically induced current densities, ring current strengths, and aromatic ring current pathways were calculated at the density functional theory (DFT) level using the B3LYP and BHandHLYP functionals. The results demonstrate that boron coordination with O/Cl, as well as two-electron oxidation of B2(porphin) disrupt current pathways, significantly altering the aromatic character and magnetic properties of the molecules. Neutral B2(porphin) sustains a strong paratropic ring current of −39.1 nA T−1 leading to its paramagnetism (χ = 15.6 a.u.). In contrast, its double charged forms adopt aromatic character with diatropic ring current (27.3 nA T−1 and 28.3 nA T−1 for dication and dianion, respectively) and diamagnetic susceptibility (χ = −77.2 a.u. and χ = −88.9 a.u. for dication and dianion, respectively). The introduction of electron-deficient boron atoms into the conjugated system of aromatic porphin and antiaromatic isophlorins reduces electron delocalization, as evidenced by significantly weaker ring current strengths compared to their parent counterparts without boron atoms. Charge-dependent ring current behavior was also observed for meso-boron-doped porphin, tetraoxa-isophlorin, and tetrathia-isophlorin. Notably, the B-tetrathia-isophlorin dication sustains a strong diatropic ring current of 13.1 nA T−1 despite its distorted geometry, confirming its aromatic character. These findings highlight the tunable electronic and magnetic properties of boron-doped porphyrins, providing key insights for designing functional molecular materials.
利用环电流判据计算研究了一系列硼掺杂卟啉的电子离域和芳构性。利用B3LYP和BHandHLYP泛函在密度泛函理论(DFT)水平上计算了磁感应电流密度、环电流强度和芳香环电流通路。结果表明,硼与O/Cl的配位以及B2(卟啉)的双电子氧化破坏了电流通路,显著改变了分子的芳香特性和磁性能。中性B2(卟啉)维持−39.1 nA T−1的强顺向环电流,导致其顺磁性(χ = 15.6 a.u)。相比之下,其双电荷形式具有芳香性,具有各向异性环电流(分别为27.3 nA T−1和28.3 nA T−1)和抗磁化率(分别为χ = - 77.2 a.u.和χ = - 88.9 a.u.)。将缺电子的硼原子引入到芳香卟啉和反芳香异酚啉的共轭体系中,可以减少电子离域,与没有硼原子的母体相比,环电流强度明显减弱。电荷依赖的环电流行为也被观察到中硼掺杂的卟啉,四氧异黄酮和四氧异黄酮。值得注意的是,尽管B-tetrathia-isophlorin的几何形状扭曲,但它仍能维持13.1 nA T−1的强各向异性环电流,这证实了它的芳香特性。这些发现突出了硼掺杂卟啉的可调谐电子和磁性能,为设计功能分子材料提供了关键见解。