| Literature DB >> 35548123 |
Ilenia Pisagatti1, Giuseppe Gattuso1, Anna Notti1, Melchiorre F Parisi1, Giovanna Brancatelli2, Silvano Geremia2, Francesco Greco3,4, Salvatrice Millesi3,4, Andrea Pappalardo3,4, Luca Spitaleri3,4, Antonino Gulino3,4.
Abstract
Covalent bonding of 7-chloro-4-quinolylazo-octamethoxypillar[5]arene molecules to silylated quartz substrates readily produced a new chromogenic reusable pillararene-coated quartz slide, for the direct UV detection of "transparent" analytes in solution. This device provides an analyte-selective optical response towards linear (di)amines with a highly reproducible optical read-out. This journal is © The Royal Society of Chemistry.Entities:
Year: 2018 PMID: 35548123 PMCID: PMC9086462 DOI: 10.1039/c8ra06792a
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Scheme 1The syntheses of: (a) 7-chloro-4-quinolylazo-octamethoxypillar[5]arene (QAP5) and (b) the corresponding quartz-grafted monolayer (QAP5_ML).
Fig. 1Side (left) and top (right) views of the solid-state structure of QAP5. Hydrogen atoms and solvent molecules have been omitted for the sake of clarity.
Fig. 2Al-Kα excited XPS of the QAP5_ML in the O 1s and N 1s energy-regions, panels (a) and (b), respectively. Structures due to Kα3,4 satellites were subtracted from the spectra. Open circles, present in both panels, indicate the experimental data points. Panel (a) the green and red traces refer to the Gaussian components at 530.8 and 532.6 eV, respectively. The blue trace, superimposed on the experimental data points, represents the sum of the two Gaussian components. Panel (b) the red, green and yellow traces refer to the Gaussian components centred at 401.0, 399.9 and 399.2 eV, respectively. The blue trace superimposed on the experimental datapoints refers to the sum of the three Gaussian components.
Fig. 3UV-vis spectra of a QAP5_ML before (black trace) and after immersion in 100 ppm TCE solutions of n-butylamine, 1,8-diaminooctane and dansylcadaverine (red, blue and dark cyan traces, respectively).
Fig. 4Peak position variations for the QAP5_ML upon sequential 5 min. Dipping in a 100 ppm TCE solution of n-butylamine followed by rinsing (10 min) with TCE.