Literature DB >> 25070226

Electronically tunable anion-π interactions in pyrylium complexes: experimental and theoretical studies.

Antonio Franconetti1, Lidia Contreras-Bernal, Sorel Jatunov, Manuel Gómez-Guillén, Manuel Angulo, Rafael Prado-Gotor, Francisca Cabrera-Escribano.   

Abstract

Noncovalent interactions of anions with electron-deficient aromatic rings that have been studied so far involve non-heteroaromatic or nitrogen-based heteroaromatic systems. Here we report the first case of an organic oxygenated aromatic system, in particular the tri-aryl-pyrylium tetrafluoroborate system, for which noncovalent anion-π interactions of the pyrylium cation with the tetrafluoroborate anion have been experimentally detected and demonstrated by means of (19)F NMR spectroscopy in solution. A series of pyrylium tetrafluoroborate salts were synthesized in the presence of BF3·Et2O, by direct reaction of 4-substituted benzaldehydes with 4-substituted acetophenones or via the previously obtained chalcone of the less reactive ketone. Correlations of (19)F NMR chemical shifts of tetrafluoroborate anion for most of the synthesized tri-arylpyrylium tetrafluoroborate complexes with both the pyrylium cation molecular weight and the standard substituent Hammett constants, demonstrate anion-π(+) interaction to act between the polyatomic anion BF4(-) and the pyrylium aromatic system. DFT calculations reveal that an additional (C-H)(+)-anion hydrogen bond involving the H(5) of pyrylium ring exists for these fluorescent dyes that show a tunable cup-to-cap shape cavity. The strong fluorescence emission observed for some representative pyrylium tetrafluoroborates described herein, makes them a promising class of tunable emission wavelength dyes for laser technology applications.

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Year:  2014        PMID: 25070226     DOI: 10.1039/c4cp01977f

Source DB:  PubMed          Journal:  Phys Chem Chem Phys        ISSN: 1463-9076            Impact factor:   3.676


  2 in total

1.  Anion-π Catalysis Enabled by the Mechanical Bond.

Authors:  John R J Maynard; Bartomeu Galmés; Athanasios D Stergiou; Mark D Symes; Antonio Frontera; Stephen M Goldup
Journal:  Angew Chem Int Ed Engl       Date:  2022-02-03       Impact factor: 16.823

2.  Flavylium Salts: A Blooming Core for Bioinspired Ionic Liquid Crystals.

Authors:  Robert Forschner; Jakob Knelles; Korinna Bader; Carsten Müller; Wolfgang Frey; Andreas Köhn; Yann Molard; Frank Giesselmann; Sabine Laschat
Journal:  Chemistry       Date:  2019-09-18       Impact factor: 5.236

  2 in total

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