Dongre Sangram D, Venugopal Geethu, Kumar Viksit, Badrinarayan Jadhav Ashok, Kumar Jatish, Santhosh Babu Sukumaran
Organic Chemistry Division, National Chemical Laboratory (CSIR-NCL), Dr. Homi Bhabha Road, Pune, 411 008, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201 002, India.
Angew Chem Int Ed Engl. 2025 Feb 3;64(6):e202420767. doi: 10.1002/anie.202420767. Epub 2024 Dec 18.
Nanographenes have captivated scientific interest since the pioneering discovery of graphene. Recently, attention has shifted towards exploring chiral and nonplanar nanographenes, for their distinct optical, chiroptical, and electronic properties. Despite the growing acceptance of helicenes, the research on inducing helical chirality on π-extended derivatives to boost chiroptical properties remains unattended. In our study, we introduce a new π-extended [7]-helicene resulting from the condensation of diamines with 3,6-dibromophenanthrene-9,10-dione, complemented by two hexabenzocoronene arms in the periphery. Notably, the nanographene containing binaphtho-[1,4]diazocine, compared to the corresponding phenazine, exhibits a remarkable average 2.5, 5, and 10-fold enhancements in quantum yield, dissymmetry factor, and brightness, respectively, when measured in five different solvents. These improvements underscore the significance of the induced helical chirality by the antiaromatic binaphtho-[1,4]diazocine in influencing the chiroptical properties of the helical nanographene. Our research represents a significant stride toward unlocking the potential of π-extended helicenes and lays the groundwork for further exploration in designing and synthesizing new chiral nanomaterials.
自从石墨烯被首次发现以来,纳米石墨烯就引起了科学界的兴趣。最近,人们的注意力已转向探索手性和非平面纳米石墨烯,因为它们具有独特的光学、旋光和电子特性。尽管螺旋烯越来越被人们所接受,但关于在π-扩展衍生物上诱导螺旋手性以增强旋光性质的研究仍未得到关注。在我们的研究中,我们引入了一种新的π-扩展[7]螺旋烯,它是由二胺与3,6-二溴菲-9,10-二酮缩合而成,并在其外围辅以两个六苯并蔻臂。值得注意的是,与相应的吩嗪相比,含有联萘并-[1,4]二氮杂萘的纳米石墨烯在五种不同溶剂中测量时,其量子产率、不对称因子和亮度分别平均显著提高了2.5倍、5倍和10倍。这些改进突出了反芳香性联萘并-[1,4]二氮杂萘诱导的螺旋手性对影响螺旋纳米石墨烯旋光性质的重要性。我们的研究朝着释放π-扩展螺旋烯的潜力迈出了重要一步,并为设计和合成新型手性纳米材料的进一步探索奠定了基础。