Department of Chemistry and State Key Laboratory of Synthetic Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong, China.
Chemistry and Chemical Engineering Guangdong Laboratory, Shantou, 515031, China.
Angew Chem Int Ed Engl. 2023 May 15;62(21):e202302761. doi: 10.1002/anie.202302761. Epub 2023 Apr 17.
Synthetic methodology is considered a holy grail in both organic chemistry and materials science. Over the past few decades, researchers have explored graphene-type molecules (or nanographenes) through classic Scholl oxidative cyclodehydrogenation. Despite the successes achieved with various nanographenes, the development of new methods to synthesize these highly desired molecules lags behind. Herein, we developed a facile and effective method to produce a series of nanographenes bearing nitrogen (N)-doped pentagon-heptagon pairs in acceptable yields. Modification of the heptagonal ring endowed the resultant nanographenes with tunable physicochemical properties; for instance, M9 exhibited both aggregation-caused quenching and aggregation-induced emission behavior. Most strikingly, novel nanographenes containing N-doped pentagon-octagon pairs were also obtained using the same synthetic strategy, demonstrating the superior versatility and efficiency of the proposed ring expansion method.
合成方法被认为是有机化学和材料科学的圣杯。在过去的几十年中,研究人员通过经典的 Scholl 氧化环脱氢反应探索了类石墨烯分子(或纳米石墨烯)。尽管已经在各种纳米石墨烯上取得了成功,但开发新的方法来合成这些备受追捧的分子仍然落后。在这里,我们开发了一种简便有效的方法,以可接受的产率生产一系列具有氮(N)掺杂五边形-七边形对的纳米石墨烯。七元环的修饰赋予所得纳米石墨烯可调的物理化学性质;例如,M9 表现出聚集诱导猝灭和聚集诱导发光行为。最引人注目的是,还使用相同的合成策略获得了含有 N 掺杂的五边形-八边形对的新型纳米石墨烯,这证明了所提出的环扩张方法具有优越的多功能性和效率。