Synthesis and Characterization of Circumtetracene: Unraveling Structure‐Property Relationships of Circumacenes

Q Qing Jiang J Junjie He F Fuzhong Gu (College of Chemistry and Bioengineering Hunan University of Science and Engineering Yongzhou 425100 China) Y Yixuan Jiang N Ning Li X Xiaojing Fang Z Zhenni Hu (College of Chemistry and Bioengineering Hunan University of Science and Engineering Yongzhou 425100 China) Z Zhonghao Gui (College of Chemistry and Bioengineering Hunan University of Science and Engineering Yongzhou China) W Wangdong Zeng C Chunyan Chi (Department of Chemistry, National University of Singapore, 3 Science Drive 3, 117543, Singapore)

Abstract

Abstract Circumacenes have garnered significant interest in both fundamental science and nanoelectronics due to their unique electronic structures. However, their synthesis and investigations into the structure–property relationships present considerable challenges. In this work, we report the successful synthesis and characterization of a stable circumtetracene derivative in crystalline form. For comparison, a new circumanthracene derivative was also prepared. The electronic properties of both compounds were systematically investigated using both various experimental techniques and theoretical calculations. It was found that circumtetracene exhibits a dominant local aromatic nature with small open‐shell diradical character, while circumanthracene displays a closed‐shell global aromatic character. Both compounds show amphoteric redox behavior with narrow energy gaps. The dication of circumtetracene and the dianions of circumtetracene and circumanthracene can be obtained experimentally through chemical oxidation and reduction, all displaying intense NIR absorptions. Furthermore, the electronic properties of these derivatives were compared with those of previously reported circumacene analogues, revealing a transition in electronic structure from closed‐shell global aromatic to singlet open‐shell local aromatic configurations upon π‐extension. This work provides a comprehensive exploration of the structure‐property relationships within the circumacene series, offering valuable insights for the design and synthesis of novel multizigzag‐edged nanographenes with tunable electronic properties.

Article Details

Volume / Issue Vol. 64, Issue 24
Published June 10, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (10)

Q

Qing Jiang

J

Junjie He

F

Fuzhong Gu

College of Chemistry and Bioengineering Hunan University of Science and Engineering Yongzhou 425100 China

Y

Yixuan Jiang

N

Ning Li

X

Xiaojing Fang

Z

Zhenni Hu

College of Chemistry and Bioengineering Hunan University of Science and Engineering Yongzhou 425100 China

Z

Zhonghao Gui

College of Chemistry and Bioengineering Hunan University of Science and Engineering Yongzhou China

W

Wangdong Zeng

C

Chunyan Chi

Department of Chemistry, National University of Singapore, 3 Science Drive 3, 117543, Singapore