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1.
Chem Sci ; 9(30): 6451, 2018 08 14.
Article in English | MEDLINE | ID: mdl-30310575

ABSTRACT

[This corrects the article DOI: 10.1039/C8SC01973H.].

2.
Chem Sci ; 9(26): 5828-5836, 2018 Jul 14.
Article in English | MEDLINE | ID: mdl-30079195

ABSTRACT

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 G2XBme2+ 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.

3.
Acta Crystallogr B Struct Sci Cryst Eng Mater ; 73(Pt 2): 203-209, 2017 Apr 01.
Article in English | MEDLINE | ID: mdl-28362283

ABSTRACT

The halogen bond (XB) is a topical noncovalent interaction of rapidly increasing importance. The XB employs a `soft' donor atom in comparison to the `hard' proton of the hydrogen bond (HB). This difference has led to the hypothesis that XBs can form more favorable interactions with `soft' bases than HBs. While computational studies have supported this suggestion, solution and solid-state data are lacking. Here, XB soft-soft complementarity is investigated with a bidentate receptor that shows similar associations with neutral carbonyls and heavy chalcogen analogs. The solution speciation and XB soft-soft complementarity is supported by four crystal structures containing neutral and anionic soft Lewis bases.


Subject(s)
Halogens/chemistry , Anions/chemistry , Crystallization , Dimethylformamide/chemistry , Dimethylformamide/metabolism , Hydrogen Bonding , Iodides/chemistry , Magnetic Resonance Spectroscopy
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