Revisiting Acepleiadylene: Two-Step Synthesis and π‑Extension toward Nonbenzenoid Nanographene

Acepleiadylene (APD), a nonbenzenoid nonalternant isomer of pyrene, exhibits different electronic properties from pyrene, but has been rarely studied since its first synthesis in 1956, probably due to the difficulties in synthesis and further derivatization. In this work, we revisited this long-know...

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Veröffentlicht in:Journal of the American Chemical Society 2021-04, Vol.143 (14), p.5314-5318
Hauptverfasser: Liu, Pengcai, Chen, Xing-Yu, Cao, Jiawen, Ruppenthal, Lukas, Gottfried, J. Michael, Müllen, Klaus, Wang, Xiao-Ye
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container_end_page 5318
container_issue 14
container_start_page 5314
container_title Journal of the American Chemical Society
container_volume 143
creator Liu, Pengcai
Chen, Xing-Yu
Cao, Jiawen
Ruppenthal, Lukas
Gottfried, J. Michael
Müllen, Klaus
Wang, Xiao-Ye
description Acepleiadylene (APD), a nonbenzenoid nonalternant isomer of pyrene, exhibits different electronic properties from pyrene, but has been rarely studied since its first synthesis in 1956, probably due to the difficulties in synthesis and further derivatization. In this work, we revisited this long-known compound and developed a new two-step synthetic route to efficiently access APD on the gram scale. Theoretical and experimental characterizations elucidated the unique properties of APD as compared with its benzenoid isomer pyrene, particularly revealing its dipolar structure with a narrow optical gap. The functionalization of APD was demonstrated for the first time, providing doubly brominated APD as a key precursor for further π-extension. As a proof of concept, a π-extended APD and a cyclotrimer nanographene (C48H24) were constructed, opening up new avenues to nonbenzenoid nanographenes with low HOMO–LUMO gaps.
doi_str_mv 10.1021/jacs.1c01826
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title Revisiting Acepleiadylene: Two-Step Synthesis and π‑Extension toward Nonbenzenoid Nanographene
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