FLUORESCENT LIGANDS FOR OPTICAL SENSING OF ALCOHOLS - SYNTHESIS AND CHARACTERIZATION OF P-N,N-DIALKYLAMINO-TRIFLUOROACETYLSTILBENES

Citation
Gj. Mohr et al., FLUORESCENT LIGANDS FOR OPTICAL SENSING OF ALCOHOLS - SYNTHESIS AND CHARACTERIZATION OF P-N,N-DIALKYLAMINO-TRIFLUOROACETYLSTILBENES, Analytica chimica acta, 344(3), 1997, pp. 215-225
Citations number
23
Categorie Soggetti
Chemistry Analytical
Journal title
ISSN journal
00032670
Volume
344
Issue
3
Year of publication
1997
Pages
215 - 225
Database
ISI
SICI code
0003-2670(1997)344:3<215:FLFOSO>2.0.ZU;2-R
Abstract
Novel fluorescent ligands have been synthesised which interact with sp ecific alcohols resulting in a change of absorbance as well as fluores cence. 4-trifluoracetyl-4'-(di-N-butylamino)stilbene (ETHT 4003) exhib its an absorption at around 450 nm in organic solvents, whereas, upon reaction with primary alcohols, the maximum shifts to around 360 nm. T he fluorescence emission of the positively solvatochromic dye ranges f rom 500 to 700 nm and, upon reaction with alcohols, is also blue-shift ed to around 450 nm. The significant shift of both absorbance and fluo rescence is based on the chemical conversion of the trifluoroacetyl gr oup of the dye into the hemiacetal, thus causing a change in the elect ron distribution of the dye and a spectral shift of around 100 nm. The reaction is selective for alcohols, which are not sterically hindered to approach the trifluoroacetyl group, i.e. for primary alcohols. An example for the analytical application of the ligands is given. An opt ical sensor is prepared by embedding 4-trifluoracetyl-4'-(di-N-butylam ino)stilbene in plasticised PVC and coating the layer with white PTFE. The microporous PTFE coating provides an optical isolation and preven ts interferences of ions. The sensor exhibits a sensitive range from 5 -50 vol% ethanol with maximum signal changes to be in the range of 40% . The detection limit is 2 vol% ethanol.