Molecule Isomerism Modulates the Diradical Properties of Stable Singlet Diradicaloids

Inclusion of quinoidal cores in conjugated hydrocarbons is a common strategy to modulate the properties of diradicaloids formed by aromaticity recovery within the quinoidal unit. Here we describe an alternative approach of tuning of diradical properties in indenoindeno­dibenzo­thiophenes upon anti →...

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Veröffentlicht in:Journal of the American Chemical Society 2020-01, Vol.142 (3), p.1548-1555
Hauptverfasser: Barker, Joshua E, Dressler, Justin J, Cárdenas Valdivia, Abel, Kishi, Ryohei, Strand, Eric T, Zakharov, Lev N, MacMillan, Samantha N, Gómez-García, Carlos J, Nakano, Masayoshi, Casado, Juan, Haley, Michael M
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Sprache:eng
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Zusammenfassung:Inclusion of quinoidal cores in conjugated hydrocarbons is a common strategy to modulate the properties of diradicaloids formed by aromaticity recovery within the quinoidal unit. Here we describe an alternative approach of tuning of diradical properties in indenoindeno­dibenzo­thiophenes upon anti → syn isomerism of the benzothiophene motif. This alters the relationship of the S atom with the radical center from linear to cross conjugation yet retains the same 2,6-naphtho conjugation pattern of the rearomatized core. We conduct a full comparison between the anti and syn derivatives based on structural, spectroscopic, theoretical, and magnetic measurements, showing that these systems are stable open-shell singlet diradicaloids that only access their triplet state at elevated temperatures.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.9b11898