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Panasyuk-Delaney, Tanya ; Mirsky, Vladimir M. ; Ulbricht, Mathias ; Wolfbeis, Otto S.

Impedometric herbicide chemosensors based on molecularly imprinted polymers

Article

Panasyuk-Delaney, Tanya, Mirsky, Vladimir M., Ulbricht, Mathias and Wolfbeis, Otto S. (2001) Impedometric herbicide chemosensors based on molecularly imprinted polymers. Analytica Chimica Acta 435, pp. 157-162.

DOI to cite this document: 10.5283/epub.20941


Abstract

The technique of grafting polymerization has been used for preparation of thin films of molecularly imprinting polymers on the surface of polypropylene membranes and on hydrophobized gold electrodes. The herbicide desmetryn was used as a template. The solid supports used were hydrophobic, while the polymerwas hydrophilic. The adsorbed layer of benzophenone, irradiated by UV-light, initiated a ...

The technique of grafting polymerization has been used for preparation of thin films of molecularly imprinting polymers on the surface of polypropylene membranes and on hydrophobized gold electrodes. The herbicide desmetryn was used as a template. The solid supports used were hydrophobic, while the polymerwas hydrophilic. The adsorbed layer of benzophenone, irradiated by UV-light, initiated a radical polymerization near the surface. Polymer films were characterized by weighing, contact angle measurements and impedance spectroscopy. The electrodes coated with the molecularly imprinted polymers displayed fairly specific binding of desmetryn, as detected by the decrease in the capacitance of the electrode. Only small capacitive effects were observed on addition of terbumeton or atrazine, while metribuzine displayed capacitance decrease similar to desmetryn.



Involved Institutions


Details

Item typeArticle
Journal or Publication TitleAnalytica Chimica Acta
PublisherElsevier
Volume435
Page Rangepp. 157-162
Date2001
Date of publication06 Jun 2011 12:24
InstitutionsChemistry and Pharmacy > Institut für Analytische Chemie, Chemo- und Biosensorik > Chemo- und Biosensorik (Prof. Antje J. Bäumner, formerly Prof. Wolfbeis)
Identification Number
ValueType
10.1016/S0003-2670(00)01280-0DOI
KeywordsMolecular imprinting; Capacitive sensor; Chemical sensor; Grafting polymerization; Photopolymerization
Dewey Decimal Classification500 Science > 540 Chemistry & allied sciences
StatusPublished
RefereedUnknown
Created at the University of RegensburgUnknown
Item ID20941

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