Amperometric sensors for non electroactive substances have been obtainted by contacting glassy carbon or graphite electrodes with molecularly imprinted polymeric (MIP) membranes, 300-0.6 micron thick. The thicker membranes were self standing membranes while the thinner ones were prepared by drop coating on a graphite electrode. Cyanuric acid and atrazine were the target compounds. Determinations were carried out at -850 mV (vs Ag/AgCl(sat)) in aqueous solution at pH=1.5, followed by a step at +500. The current linearly depends on the concentration of the template molecule in aqueous solution up to 10^(-4) M. For atrazine the current increases with the concentration, while for cyanuric acid the current intensity decreases. Not any current variation was observed on bare carbon electrodes, nor on electrodes covered with a non imprinted membrane. The detection limit was 9 10^(-7) M for atrazine and 2 10^(-5) M for cyanuric acid. The sensors response was very fast and selective for the corresponding template.

Molecularly imprinted polymer-based sensors for amperometric determination of nonelectroactive substances

PESAVENTO, MARIA;D'AGOSTINO, GIROLAMO;BIESUZ, RAFFAELA;ALBERTI, GIANCARLA
2009-01-01

Abstract

Amperometric sensors for non electroactive substances have been obtainted by contacting glassy carbon or graphite electrodes with molecularly imprinted polymeric (MIP) membranes, 300-0.6 micron thick. The thicker membranes were self standing membranes while the thinner ones were prepared by drop coating on a graphite electrode. Cyanuric acid and atrazine were the target compounds. Determinations were carried out at -850 mV (vs Ag/AgCl(sat)) in aqueous solution at pH=1.5, followed by a step at +500. The current linearly depends on the concentration of the template molecule in aqueous solution up to 10^(-4) M. For atrazine the current increases with the concentration, while for cyanuric acid the current intensity decreases. Not any current variation was observed on bare carbon electrodes, nor on electrodes covered with a non imprinted membrane. The detection limit was 9 10^(-7) M for atrazine and 2 10^(-5) M for cyanuric acid. The sensors response was very fast and selective for the corresponding template.
2009
Chemistry & Analysis covers research on natural and laboratory syntheses, chemical structure, structure-function relationship, isolation and analyses of biologically significant molecules, medicinal and food chemistry. Technical material describing crucial chemical methods in biochemical analysis and research is also placed in this category. Resources covering general biochemistry and natural metabolic pathways are excluded.
Esperti anonimi
Inglese
Internazionale
STAMPA
21
611
618
8
Amperometric sensors; Non-electroactive substances; Molecular imprinted polymers; Polymethacrylic acid membrane; Atrazine; Cyanuric Acid
4
info:eu-repo/semantics/article
262
Pesavento, Maria; D'Agostino, Girolamo; Biesuz, Raffaela; Alberti, Giancarla
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/142561
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