Department of Physics, Deen Dayal Upadhyaya Gorakhpur University, Gorakhpur 223009, Uttar Pradesh, India.
J Phys Chem A. 2023 Jun 8;127(22):4867-4872. doi: 10.1021/acs.jpca.3c02254. Epub 2023 May 24.
Polycyclic hydrocarbon (PH) radicals and anions such as CH, CH, CH, and CH generally possess low electron affinity (EA) and vertical detachment energy (VDE), respectively, due to their aromaticity and, consequently, enhanced stability. In this work, we propose a simple strategy to design polycyclic superhalogens (PSs) by replacing all hydrogens by cyano (CN) groups. Superhalogens can be defined as the radicals having higher EA than halogens or anions having higher VDE than halides (3.64 eV). Our density functional calculations suggest that the EA (VDE) of PS radicals (anions) exceeds 5 eV. All these PS anions are aromatic, except C(CN), which is anti-aromatic. The superhalogen property of these PSs can be attributed to the EA of CN ligands, leading to the delocalization of extra electronic charge significantly as explained using prototype CH(CN) systems. We also notice that the 'superhalogenity' (superhalogen behavior) of CH(CN) is directly related to their aromaticity. We have also shown that the substitution of CN is energetically favorable, which confirms their experimental viability. Our findings should motivate experimentalists to synthesize these superhalogens for further exploration and future applications.
多环烃 (PH) 自由基和阴离子,如 CH、CH、CH 和 CH,通常由于其芳香性而具有低电子亲和力 (EA) 和垂直离解能 (VDE),从而具有更高的稳定性。在这项工作中,我们提出了一种通过用氰基 (CN) 基团取代所有氢原子来设计多环超卤素 (PS) 的简单策略。超卤素可以定义为具有比卤素更高的 EA 的自由基,或者具有比卤化物更高的 VDE 的阴离子(3.64 eV)。我们的密度泛函计算表明 PS 自由基 (阴离子) 的 EA (VDE) 超过 5 eV。除了 C(CN),这些 PS 阴离子都是芳香族的,C(CN) 是反芳香族的。这些 PS 的超卤素性质可归因于 CN 配体的 EA,这导致额外电子电荷的离域程度显著增加,如使用原型 CH(CN) 系统所解释的那样。我们还注意到,CH(CN) 的“超卤素性”(超卤素行为)与其芳香性直接相关。我们还表明,CN 的取代在能量上是有利的,这证实了它们在实验上的可行性。我们的发现应该激励实验家合成这些超卤素,以进一步探索和未来应用。