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通过逐步脱氢环化生成的带有五角形 - 七角形对的螺旋纳米石墨烯。

Helical Nanographenes Bearing Pentagon-Heptagon Pairs by Stepwise Dehydrocyclization.

作者信息

Ju Yang-Yang, Luo Huan, Li Ze-Jia, Zheng Bing-Hui, Xing Jiang-Feng, Chen Xuan-Wen, Huang Ling-Xi, Nie Guo-Hui, Zhang Bin, Liu Junzhi, Tan Yuan-Zhi

机构信息

Shenzhen Key Laboratory of Nanozymes and Translational Cancer Research, Department of Otolaryngology, Shenzhen Institute of Translational Medicine, The First Affiliated Hospital of Shenzhen University, Shenzhen Second People's Hospital, Shenzhen, 518035, China.

State Key Laboratory for Physical Chemistry of Solid Surfaces, and Department of Chemistry, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, 361005, China.

出版信息

Angew Chem Int Ed Engl. 2024 May 13;63(20):e202402621. doi: 10.1002/anie.202402621. Epub 2024 Mar 20.

Abstract

The incorporation of pentagon-heptagon pairs into helical nanographenes lacks a facile synthetic route, and the impact of these pairs on chiroptical properties remains unclear. In this study, a method for the stepwise construction of pentagon-heptagon pairs in helical nanographenes by the dehydrogenation of [6]helicene units was developed. Three helical nanographenes containing pentagon-heptagon pairs were synthesized and characterized using this approach. A wide variation in the molecular geometries and photophysical properties of these helical nanographenes was observed, with changes in the helical length of these structures and the introduction of the pentagon-heptagon pairs. The embedded pentagon-heptagon pairs reduced the oxidation potential of the synthesized helical nanographenes. The high isomerization energy barriers enabled the chiral resolution of the helicene enantiomers. Chiroptical investigations revealed remarkably enhanced circularly polarized luminescence and luminescence dissymmetry factors with an increasing number of the pentagon-heptagon pairs.

摘要

将五角形-七角形对纳入螺旋纳米石墨烯缺乏简便的合成路线,并且这些对对手性光学性质的影响仍不清楚。在本研究中,开发了一种通过[6]螺烯单元脱氢逐步构建螺旋纳米石墨烯中五角形-七角形对的方法。使用该方法合成并表征了三种含有五角形-七角形对的螺旋纳米石墨烯。观察到这些螺旋纳米石墨烯的分子几何形状和光物理性质有很大变化,这些结构的螺旋长度发生了变化,并且引入了五角形-七角形对。嵌入的五角形-七角形对降低了合成的螺旋纳米石墨烯的氧化电位。高异构化能垒使得螺烯对映体能够实现手性拆分。手性光学研究表明,随着五角形-七角形对数量的增加,圆偏振发光和发光不对称因子显著增强。

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