Utilizing “Latent” Carbon: Repositioning Hydrogen‐Bonded Synthons and Assemblies via Halogen Bonding to π‐Systems

Author:

Vainauskas Jogirdas12ORCID,Wahrhaftig‐Lewis Alexander1ORCID,Friščić Tomislav12ORCID

Affiliation:

1. School of Chemistry University of Birmingham Edgbaston B15 2TT Birmingham United Kingdom

2. Department of Chemistry McGill University 801 Sherbrooke St. W. H3 A 0B8 Montreal Canada

Abstract

AbstractMolecules bearing carboxylic acid, amide, and hydroxyl groups are ubiquitous in crystal engineering, where robust hydrogen‐bonded synthons centred on these functionalities enable reliable crystal structure design. We now show that halogen bonding to the carbon π‐system of such molecules, traditionally ignored in crystal engineering, permits the recognition and directional assembly of the resulting hydrogen‐bonded structural subunits, leaving the archetypal hydrogen‐bonded ring, ladder, and chain homosynthons intact, but repositioned in space. When applied to heteromolecular synthons, this enables rearranging more complex hydrogen‐bonded motifs and the evolution of binary cocrystals into ternary ones through “latent” carbon‐based recognition sites, demonstrating a rational approach to build higher‐order solid‐state supramolecular assemblies.

Funder

Leverhulme Trust

International Centre for Diffraction Data

Natural Sciences and Engineering Research Council of Canada

University of Birmingham

McGill University

Publisher

Wiley

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