Kumar Viksit, Venugopal Geethu, Jadhav Ashok Badrinarayan, Dongre Sangram D, Gonnade Rajesh, Kumar Jatish, Ruer Paul C, Hupp Benjamin, Steffen Andreas, Babu Sukumaran Santhosh
Organic Chemistry Division, National Chemical Laboratory (CSIR-NCL), Dr. Homi Bhabha Road, Pune, 411008, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201 002, India.
Angew Chem Int Ed Engl. 2025 Feb 3;64(6):e202422125. doi: 10.1002/anie.202422125. Epub 2025 Jan 16.
The cutouts of graphene sheets, particularly those with a nonplanar topology, present vast opportunities for advancement. Even a slight deviation from the planar structure can lead to intriguing (chiro)optical features for helically twisted nanographenes. In this context, we introduce two regioisomeric π-extended nanographenes that exhibit distinct excited-state characteristics. The helicene structure and the photophysical features can be easily tuned by changing the connecting position of the nanographene to the carbazole core (2,7- and 3,6-). Single-crystal X-ray diffraction analysis confirmed the formation of nanographenes with bent and helical conformations. Both derivatives exhibited thermally activated delayed fluorescence at room temperature and phosphorescence at low temperatures. Notably, the nanographene with the bent structure displayed an impressive red afterglow lasting over 30 seconds, in contrast to the very weak afterglow observed in the helical structure. DFT calculations revealed the existence of an isoenergetic higher triplet state (T) and comparatively weak spin-orbit coupling (T-S), thereby enabling the bent nanographene to exhibit a long-lived component and strong afterglow. Our findings highlight the significance of regioisomeric nanographenes with exceptional optical properties and offer a deeper understanding of the structure-property relationship in nonplanar nanographenes.
石墨烯片的剪裁,特别是那些具有非平面拓扑结构的石墨烯片,为其发展带来了巨大机遇。即使与平面结构有轻微偏差,也能为螺旋扭曲的纳米石墨烯带来引人入胜的(手性)光学特性。在此背景下,我们引入了两种区域异构体π-扩展纳米石墨烯,它们展现出不同的激发态特性。通过改变纳米石墨烯与咔唑核心(2,7-和3,6-)的连接位置,可以轻松调节螺旋烯结构和光物理特性。单晶X射线衍射分析证实了具有弯曲和螺旋构象的纳米石墨烯的形成。两种衍生物在室温下均表现出热激活延迟荧光,在低温下表现出磷光。值得注意的是,具有弯曲结构的纳米石墨烯显示出令人印象深刻的持续超过30秒的红色余辉,而在螺旋结构中观察到的余辉则非常微弱。密度泛函理论计算揭示了等能量的较高三重态(T)的存在以及相对较弱的自旋-轨道耦合(T-S),从而使弯曲的纳米石墨烯能够表现出长寿命成分和强余辉。我们的研究结果突出了具有特殊光学性质的区域异构体纳米石墨烯的重要性,并为非平面纳米石墨烯的结构-性质关系提供了更深入的理解。