Han Yi, Dong Shaoqiang, Shao Jiawei, Fan Wei, Chi Chunyan
Department of Chemistry, National University of Singapore, 3 Science Drive 3, 117543, Singapore, Singapore.
Angew Chem Int Ed Engl. 2021 Feb 1;60(5):2658-2662. doi: 10.1002/anie.202012651. Epub 2020 Dec 1.
Synthesis of a carbon nanobelt (CNB) is a very challenging task in organic chemistry. Herein, we report the successful synthesis of an octabenzo[12]cyclacene based CNB (6), which can be regarded as a sidewall fragment of a (12,0) carbon nanotube. The key intermediate compound, a tetraepoxy nanobelt (5), was first synthesized by Diels-Alder reaction, and subsequent reductive aromatization gave the fully conjugated CNB 6. X-ray crystallographic analysis unambiguously confirmed the belt-shaped structure of 6. H NMR spectrum and theoretical calculations (ACID, NICS, and 2D/3D ICSS) revealed localized aromaticity and stronger shielding chemical environment in the inner region of the belt. The optical properties (absorption and emission) of 6 were studied and correlated to its electronic structure. Strain analysis indicates that the phenyl substituents at the zigzag edges are crucial to the successful synthesis of 6. This report presents a new strategy towards highly strained CNBs.
碳纳米带(CNB)的合成在有机化学中是一项极具挑战性的任务。在此,我们报道了一种基于八苯并[12]环并苯的碳纳米带(6)的成功合成,其可被视为(12,0)碳纳米管的侧壁片段。关键中间体化合物,一种四环氧纳米带(5),首先通过狄尔斯-阿尔德反应合成,随后的还原芳构化得到了完全共轭的碳纳米带6。X射线晶体学分析明确证实了6的带状结构。1H NMR光谱和理论计算(ACID、NICS和2D/3D ICSS)揭示了该纳米带内部区域的局域芳香性和更强的屏蔽化学环境。对6的光学性质(吸收和发射)进行了研究,并将其与电子结构相关联。应变分析表明,锯齿边缘处的苯基取代基对于6的成功合成至关重要。本报告提出了一种合成高应变碳纳米带的新策略。