Chemical transformations of push-pull fluorenones: push-pull dibenzodicyanofulvenes as well as fluorenone- and dibenzodicyanofulvene-tetracyanobutadiene conjugates

Push-pull fluorenones (FOs) were synthesized by treating a benzopentalenequinone (BPO) derivative with alkynes that bear an electron-rich aniline moiety via a regioselective [4 + 2] cycloaddition (CA) followed by a [4 + 1] retrocycloaddition (RCA). The resulting FOs were readily converted into diben...

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Veröffentlicht in:Organic & biomolecular chemistry 2020-06, Vol.18 (22), p.4198-429
Hauptverfasser: Kato, Shin-ichiro, Kijima, Tomokazu, Shiota, Yoshihito, Abe, Tsukasa, Kuwako, Satoshi, Miyauchi, Hidenori, Yoshikawa, Naoki, Yamamoto, Koji, Yoshizawa, Kazunari, Yoshihara, Toshitada, Tobita, Seiji, Nakamura, Yosuke
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Sprache:eng
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Zusammenfassung:Push-pull fluorenones (FOs) were synthesized by treating a benzopentalenequinone (BPO) derivative with alkynes that bear an electron-rich aniline moiety via a regioselective [4 + 2] cycloaddition (CA) followed by a [4 + 1] retrocycloaddition (RCA). The resulting FOs were readily converted into dibenzodicyanofulvenes (DBDCFs) by treatment with malononitrile in the presence of TiCl 4 and pyridine. The FOs and DBDCFs exhibit intramolecular charge-transfer (ICT) that manifests in absorptions at 350-650 nm and amphoteric electrochemical behavior. Furthermore, FOs and DBDCFs that contain a C&z.tbd;C bond react with tetracyanoethylene in a formal [2 + 2] CA followed by a retro-electrocyclization to afford sterically congested tetracyanobutadiene (TCBD) conjugates. The substituent (H or Me) on the aromatic ring adjacent to the butadiene moiety thereby determines whether the butadiene adopts an s- cis or s- trans conformation, and thus controls the physicochemical properties of the resulting TCBDs. The TCBD conjugates exhibit ICT absorptions (≤800 nm) together with up to four reversible reduction steps. We report push-pull fluorenones (FOs) that can be transformed into dibenzodicyanofulvenes (DBDCFs). These FOs and DBDCFs, which contain a C&z.tbd;C bond, can subsequently be converted into tetracyanobutadiene conjugates.
ISSN:1477-0520
1477-0539
DOI:10.1039/c9ob02706h