4.8 Article

The intramolecular hydrogen bonded-halogen bond: a new strategy for preorganization and enhanced binding

Journal

CHEMICAL SCIENCE
Volume 9, Issue 26, Pages 5828-5836

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c8sc01973h

Keywords

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Funding

  1. National Science Foundation (NSF) CAREER [CHE-1555324]
  2. Center for Biomolecular Structure and Dynamics CoBRE (NIH NIGMS) [P20GM103546]
  3. Montana University System MREDI [MREDI 51030-MUSRI2015-02]
  4. University of Montana (UM)
  5. NSF [MRI CHE-1337908]

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Natural and synthetic molecules use weak noncovalent forces to preorganize structure and enable remarkable function. Herein, we introduce the intramolecular hydrogen bonded-halogen bond (HB-XB) as a novel method to preorganize halogen bonding (XBing) molecules, while generating a polarization-enhanced XB. Positioning a fluoroaniline between two iodopyridinium XB donors engendered intramolecular hydrogen bonding (HBing) to the electron-rich belt of both XB donors. NMR solution studies established the efficacy of the HB-XB. The receptor with HB-XBs (G2XB) displayed a nearly 9-fold increase in halide binding over control receptors. Gas-phase density functional theory conformational analysis indicated that the amine stabilizes the bidentate conformation. Furthermore, gas-phase interaction energies showed that the bidentate HB-XBs of G2XBme(2+) are more than 3.2 kcal mol(-1) stronger than the XBs in a control without the intramolecular HB. Additionally, crystal structures confirm that HB-XBs form tighter contacts with I- and Br- and produce receptors that are more planar. Collectively the results establish the intramolecular HB-XB as a tractable strategy to preorganize XB molecules and regulate XB strength.

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