Academic Thesis

Basic information

Name Orita Akihiro
Belonging department
Occupation name
researchmap researcher code 1000194570
researchmap agency Okayama University of Science

Title

Modular Synthesis of Substituted [n]Helicenes (n = 5-7) Starting from Arylmethyl Sulfone and Arylene Dialdehyde: Aldol-Type Condensation, Photocyclization, and Desulfonylative Arylation

Bibliography Type

Joint Author

Author

Watanabe, Hikaru; Sakami, Toshiki; Iwakura, Akira; Nakashima, Yuga; Nishinaka, Moeno; Morimoto, Hiroki; Nakashima, Shino; Okuda, Yasuhiro; Iwanaga, Tetsuo  ; Akashi, Haruo; and Akihiro Orita

Summary

Bis(p-methoxyphenysulfonyl)-substituted helicenes were successfully synthesized via UV light irradiation of the corresponding (E,E)-bis(2-aryl-2-(p-methoxyphenysulfonyl)ethenyl)arylenes, which were prepared through aldol-type condensation of arylene dialdehydes with arylmethyl p-methoxypheny sulfones. By varying the combination of dialdehydes and arylmethyl p-methoxypheny sulfones, a series of helicene homologues, ranging from [5] to [7]helicenes, were obtained. The p-methoxyphenysulfonyl groups in these helicenes were efficiently replaced with Grignard reagents via Ni-catalyzed Kumada−Tamao−Corriu coupling, yielding the corresponding alkyl- and aryl-substituted derivatives. These dialkyl- and diaryl-substituted helicenes were further expanded into larger π-conjugated systems. The trimethylsilylmethyl-substituted derivative underwent sequential bromination, phosphonation, and a Wittig−Horner reaction with arylaldehydes, affording olefinic helicenes. Furthermore, FeCl3-promoted oxidative annulation of the biphenyl-1-yl-substituted derivative resulted in the formation of a “two-blade propeller” closed [6]helicene, fused with dibenzo[g,p]chrysene arrays.

Magazine(name)

J. Org. Chem. 2025, 90, 

Publisher

American Chemical Society

Volume

90

Number Of Pages

StartingPage

9002

EndingPage

9013

Date of Issue

2025/06

Referee

Exist

Invited

Not exist

Language

English

Thesis Type

ISSN

DOI

https://doi.org/10.1021/acs.joc.5c00663

NAID

PMID

URL

J-GLOBAL ID

arXiv ID

ORCID Put Code

DBLP ID