Lingas Rafael, Charistos Nickolas D, Muñoz-Castro Alvaro
Department of Chemistry, Laboratory of Quantum and Computational Chemistry, Aristotle University of Thessaloniki, Thessaloniki, 54 124, Greece.
Facultad de Ingeniería, Arquitectura y Diseño, Universidad San Sebastián, Bellavista 7, Santiago, 8420524, Chile.
Phys Chem Chem Phys. 2023 Jul 26;25(29):19481-19491. doi: 10.1039/d3cp01994b.
Cycloparaphenylenes (CPPs) exhibit selective host capabilities, featuring the ability to incorporate smaller CPPs to form double-walled host-guest complexes. Moreover, CPPs can also be stabilized by global aromaticity under twofold oxidation or reduction, involving electronic conjugation along with the overall structural backbone. Herein we explore the structural modifications, bonding, electron delocalization and magnetic properties of doubly reduced double-walled CPP complexes with DFT methods, in the isolated and aggregate [ + 5]CPP⊃[]CPP ( = 5-8) species. Our results show that the hosts undergo structural, bonding and delocalization deformations towards quinoidal configurations and exhibit global long-ranged shielding cones similar to global aromatic free dianionic CPPs, accounting for charge delocalization on the outer nanohoops, whereas the guests preserve local aromatic benzenoid configurations, resulting in global and local aromatic circuits within the host-guest aggregate. This observation suggests that in multi-layered related species electronic delocalization will be retained at the outer structural surface. The aromaticity of the hosts is manifested in the strong upfield shifts of the guests H-NMR signals. Hence, CPP complexes can be extended to doubly reduced species stabilized by global host aromaticity expanding our understanding of doubled-walled nanotubes at the nanoscale regime.
环对亚苯基(CPPs)具有选择性主体能力,其特点是能够容纳较小的CPPs以形成双壁主客体复合物。此外,CPPs在双重氧化或还原作用下,通过整体芳香性也能实现稳定,这涉及到沿整个结构主链的电子共轭。在此,我们采用密度泛函理论方法,研究了孤立态和聚集态的[ + 5]CPP⊃[]CPP( = 5 - 8)物种中双重还原的双壁CPP复合物的结构修饰、键合、电子离域和磁性性质。我们的结果表明,主体朝着醌型构型发生结构、键合和离域变形,并表现出与整体芳香性自由二价阴离子CPPs相似的整体长程屏蔽锥,这解释了电荷在外纳米环上的离域现象,而客体则保留了局部芳香性苯型构型,从而在主客体聚集体中形成了整体和局部的芳香电路。这一观察结果表明,在多层相关物种中,电子离域将保留在外部结构表面。主体的芳香性体现在客体氢核磁共振信号的强烈高场位移上。因此,CPP复合物可以扩展到通过整体主体芳香性稳定的双重还原物种,这扩展了我们在纳米尺度下对双壁纳米管的理解。