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Halogen bonding with carbon: directional assembly of non-derivatised aromatic carbon systems into robust supramolecular ladder architectures.
Vainauskas, Jogirdas; Borchers, Tristan H; Arhangelskis, Mihails; McCormick McPherson, Laura J; Spilfogel, Toni S; Hamzehpoor, Ehsan; Topic, Filip; Coles, Simon J; Perepichka, Dmytro F; Barrett, Christopher J; Friscic, Tomislav.
Affiliation
  • Vainauskas J; School of Chemistry, University of Birmingham Edgbaston Birmingham B15 2TT UK t.friscic@bham.ac.uk.
  • Borchers TH; Department of Chemistry, McGill University 801 Sherbrooke St. W. H3A 0B8 Montreal Canada.
  • Arhangelskis M; School of Chemistry, University of Birmingham Edgbaston Birmingham B15 2TT UK t.friscic@bham.ac.uk.
  • McCormick McPherson LJ; Department of Chemistry, McGill University 801 Sherbrooke St. W. H3A 0B8 Montreal Canada.
  • Spilfogel TS; Faculty of Chemistry, University of Warsaw 1 Pasteura Street Warsaw 02-093 Poland.
  • Hamzehpoor E; EPSRC National Crystallography Service, School of Chemistry, University of Southampton, Highfield Southampton UK.
  • Topic F; Department of Chemistry, McGill University 801 Sherbrooke St. W. H3A 0B8 Montreal Canada.
  • Coles SJ; Department of Chemistry, McGill University 801 Sherbrooke St. W. H3A 0B8 Montreal Canada.
  • Perepichka DF; Department of Chemistry, McGill University 801 Sherbrooke St. W. H3A 0B8 Montreal Canada.
  • Barrett CJ; EPSRC National Crystallography Service, School of Chemistry, University of Southampton, Highfield Southampton UK.
  • Friscic T; Department of Chemistry, McGill University 801 Sherbrooke St. W. H3A 0B8 Montreal Canada.
Chem Sci ; 14(45): 13031-13041, 2023 Nov 22.
Article in En | MEDLINE | ID: mdl-38023516
ABSTRACT
Carbon, although the central element in organic chemistry, has been traditionally neglected as a target for directional supramolecular interactions. The design of supramolecular structures involving carbon-rich molecules, such as arene hydrocarbons, has been limited almost exclusively to non-directional π-stacking, or derivatisation with heteroatoms to introduce molecular assembly recognition sites. As a result, the predictable assembly of non-derivatised, carbon-only π-systems using directional non-covalent interactions remains an unsolved fundamental challenge of solid-state supramolecular chemistry. Here, we propose and validate a different paradigm for the reliable assembly of carbon-only aromatic systems into predictable supramolecular architectures not through non-directional π-stacking, but via specific and directional halogen bonding. We present a systematic experimental, theoretical and database study of halogen bonds to carbon-only π-systems (C-I⋯πC bonds), focusing on the synthesis and structural analysis of cocrystals with diversely-sized and -shaped non-derivatised arenes, from one-ring (benzene) to 15-ring (dicoronylene) polycyclic atomatic hydrocarbons (PAHs), and fullerene C60, along with theoretical calculations and a systematic analysis of the Cambridge Structural Database. This study establishes C-I⋯πC bonds as directional interactions to arrange planar and curved carbon-only aromatic systems into predictable supramolecular motifs. In >90% of herein presented structures, the C-I⋯πC bonds to PAHs lead to a general ladder motif, in which the arenes act as the rungs and halogen bond donors as the rails, establishing a unique example of a supramolecular synthon based on carbon-only molecules. Besides fundamental importance in the solid-state and supramolecular chemistry of arenes, this synthon enables access to materials with exciting properties based on simple, non-derivatised aromatic systems, as seen from large red and blue shifts in solid-state luminescence and room-temperature phosphorescence upon cocrystallisation.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Chem Sci Year: 2023 Type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Chem Sci Year: 2023 Type: Article