Affiliation:
1. Institute of Organic Chemistry Polish Academy of Sciences Kasprzaka 44/52 01-224 Warsaw Poland
2. Nantes Université, CNRS CEISAM UMR 6230 F-44000 Nantes France
3. Faculty of Chemistry University of Warsaw Pasteura 1 02-093 Warsaw Poland
4. Institut Universitaire de France (IUF) F-75005 Paris France
Abstract
AbstractThe tandem intramolecular hydroarylation of alkynes accompanied by a 1,2‐aryl shift is described. Harnessing the unique electron‐rich character of 1,4‐dihydropyrrolo[3,2‐b]pyrrole scaffold, we demonstrate that the hydroarylation of alkynes proceeds at the already occupied positions 2 and 5 leading to a 1,2‐aryl shift. Remarkably, the reaction proceeds only in the presence of cationic gold catalyst, and it leads to heretofore unknown π‐expanded, centrosymmetric pyrrolo[3,2‐b]pyrroles. The utility is verified in the preparation of 13 products that bear six conjugated rings. The observed compatibility with various functional groups allows for increased tunability with regard to the photophysical properties as well as providing sites for further functionalization. Computational studies of the reaction mechanism revealed that the formation of the six‐membered rings accompanied with a 1,2‐aryl shift is both kinetically and thermodynamically favourable over plausible formation of products containing 7‐membered rings. Steady‐state UV/Visible spectroscopy reveals that upon photoexcitation, the prepared S‐shaped N‐doped nanographenes undergo mostly radiative relaxation leading to large fluorescence quantum yields. Their optical properties are rationalized through time‐dependent density functional theory calculations. We anticipate that this chemistry will empower the creation of new materials with various functionalities.
Funder
Fundacja na rzecz Nauki Polskiej
Narodowe Centrum Nauki
Agence Nationale de la Recherche
H2020 Excellent Science
Subject
General Chemistry,Catalysis
Cited by
3 articles.
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