Cutillas-Font Guillermo, Pastor Aurelia, Alajarin Mateo, Martinez-Cuezva Alberto, Marin-Luna Marta, Batanero Belen, Berna Jose
Department of Organic Chemistry, Faculty of Chemistry, University of Murcia, Regional Campus of International Excellence Campus Mare Nostrum 30100 Murcia Spain
Department of Organic Chemistry and Inorganic Chemistry, University of Alcala, Institute of Chemical Research AndrésM. del Rio 28805 Alcalá de Henares Madrid Spain.
Chem Sci. 2024 Jul 31;15(34):13823-13831. doi: 10.1039/d4sc03657c. eCollection 2024 Aug 28.
Aza-Pechmann derivatives have emerged as interesting building blocks for the preparation of organic electronic devices. The development of methodologies aimed to enhance their chemical stability and modulate their physical and chemical properties constitutes an interesting goal. Here we report the synthesis of mechanically interlocked aza-Pechmann dyes with benzylic amide macrocycles, along with the study of how the mechanical bond impacts their stability, photophysical and redox properties. Rotaxanes composed of Pechmann dilactams as threads exhibit one of the highest energy barriers for macrocyclic ring rotation, highlighting the strength of the attractive interactions ring-thread within the interlocked structure. Their enhanced thermal stability, compared to the non-interlocked counterparts, evidences the protective role of the macrocycle. Computational and electrochemical analyses indicate that the benzylic amide macrocycle improves the stability of the HOMO and LUMO orbitals of the interlocked dyes. Finally, spectroscopic and electrochemical data reveal that the macrocycle subtly modulates the optoelectronic and redox behaviour of the Pechmann dilactams.
氮杂 - 佩希曼衍生物已成为制备有机电子器件的有趣构建块。旨在提高其化学稳定性并调节其物理和化学性质的方法的开发是一个有趣的目标。在此,我们报告了带有苄基酰胺大环的机械互锁氮杂 - 佩希曼染料的合成,以及对机械键如何影响其稳定性、光物理和氧化还原性质的研究。由佩希曼双内酰胺作为链组成的轮烷表现出大环环旋转的最高能量势垒之一,突出了互锁结构内环 - 链吸引相互作用的强度。与非互锁对应物相比,它们增强的热稳定性证明了大环的保护作用。计算和电化学分析表明,苄基酰胺大环提高了互锁染料的最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)的稳定性。最后,光谱和电化学数据表明,大环微妙地调节了佩希曼双内酰胺的光电和氧化还原行为。