Anion-controlled supramolecular crystal structures and ionic liquids from fatty acid-substituted ethyl-nicotinate ionic compounds

A series of bio-inspired fatty acid-substituted ethyl-nicotinate ionic compounds, 1-(5-carboxypentyl)-3-(ethoxycarbonyl)pyridin-1-ium ionic compounds ([Nia-OEt-C5COOH] X, X = Br − ( 1 ), B(Ph) 4 − ( 2 ), NO 3 − ( 3 ), BF 4 − ( 4 ), PF 6 − ( 5 ), and OTf − ( 6 )) were synthesized. The supramolecular...

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Veröffentlicht in:CrystEngComm 2018-11, Vol.2 (45), p.7248-7255
Hauptverfasser: Chang, Wei-Jie, Su, Padi Yi-Syong, Lee, Kwang-Ming
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Sprache:eng
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Zusammenfassung:A series of bio-inspired fatty acid-substituted ethyl-nicotinate ionic compounds, 1-(5-carboxypentyl)-3-(ethoxycarbonyl)pyridin-1-ium ionic compounds ([Nia-OEt-C5COOH] X, X = Br − ( 1 ), B(Ph) 4 − ( 2 ), NO 3 − ( 3 ), BF 4 − ( 4 ), PF 6 − ( 5 ), and OTf − ( 6 )) were synthesized. The supramolecular crystal structures of 1 and 2 were characterized by single crystal X-ray diffraction. The Nia-OEt-C5COOH cations in the two crystal structures formed dimerized secondary rectangular motifs with weak C-H...O&z.dbd;C hydrogen bonding which extended into a lipid-like bilayer and a β-sheet-like tape stacking, respectively. Four acidic ionic liquids (AILs) were formed by the other anions ( 3-6 ) because these anions and the two carbonyl O atoms of the Nia-OEt-C5COOH cation have small hydrogen bonding acceptor ability differences. In addition, the flexible ester group of Nia-OEt-C5COOH has a low barrier to the rotation of the C-O-C bonds, making it less rigid and it has a lower melting point. The four AILs were characterized by DSC thermal analysis, infrared spectroscopy and ionic conductivity. A series of bio-inspired fatty acid-substituted ethyl-nicotinate ionic compounds with a flexible ester group were prepared, and two crystals and four ionic liquids were obtained.
ISSN:1466-8033
1466-8033
DOI:10.1039/c8ce00785c