Issue 29, 2018, Issue in Progress

Assessment of EtQxBox complexation in solution by steady-state and time-resolved fluorescence spectroscopy

Abstract

Reliable chemical sensors with high selectivity and sensitivity toward specific target molecules require rational synthesis of receptors, in-depth characterization of their complexation abilities and highly efficient transduction of the molecular recognition event. Here we report a steady-state and time-resolved fluorescence investigation of EtQxBox, a fluorescent conformationally blocked quinoxaline-based cavitand, aimed at assessing its selectivity toward aromatic versus non-aromatic analytes in solution. Fluorescence quenching of the EtQxBox in acetone is observed at increasing concentration of both aromatic (i.e. benzonitrile) and aliphatic (i.e. acetonitrile) compounds. The combination with fluorescence lifetime measurements permits to discriminate the predominantly static quenching of the aromatic analyte, due to non-fluorescent host–guest complex formation, from the mostly dynamic quenching of the non-aromatic compound, resulting from aspecific diffusive collisions between the fluorophore and the quencher. The equilibrium association constants for both the complexes have been estimated using Stern–Volmer model.

Graphical abstract: Assessment of EtQxBox complexation in solution by steady-state and time-resolved fluorescence spectroscopy

Supplementary files

Article information

Article type
Paper
Submitted
03 Apr 2018
Accepted
25 Apr 2018
First published
01 May 2018
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2018,8, 16314-16318

Assessment of EtQxBox complexation in solution by steady-state and time-resolved fluorescence spectroscopy

A. Aprile, G. Palermo, A. De Luca, R. Pinalli, E. Dalcanale and P. Pagliusi, RSC Adv., 2018, 8, 16314 DOI: 10.1039/C8RA02875C

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